Claims
- 1. An information storage device comprising:
a first information storage structure having a first plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said first information storage structure has a first characteristic wavelength band Δλa and a first characteristic polarization state P1, and reflects spectral components that are incident thereto and have a wavelength within said first characteristic wavelength band Δλa and a polarization state equal to said first characteristic polarization state P1, and each said second information value storage location recorded in said first information storage structure transmits spectral components that are incident thereto and have either a wavelength outside of said first characteristic wavelength band Δλa or a polarization state which is equal to a second characteristic polarization state P2 orthogonal to said first characteristic polarization state P1; and a second information storage structure mounted to said first said information storage structure, and having a second plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said second information storage structure has said second characteristic polarization state P2 and a second characteristic wavelength band Δλb overlapping at least a portion of said first characteristic wavelength band Δλa about a prespecified wavelength λi, and reflects spectral components that are incident thereto and have a wavelength within said second characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2, and each said second information value storage location recorded in said second information storage structure transmits spectral components that are incident thereto and have either a wavelength outside of said second characteristic wavelength band Δλb or a polarization state equal to said first characteristic polarization state P1.
- 2. The information storage and retrieval system of claim 1, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 3. The information storage device of claim 1, wherein said spectral components comprise
a first spectral component having said prespecified wavelength λi and said characteristic polarization state P1 when first and second information value storage locations are being read from said first information storage structure, and a second spectral component having said prespecified wavelength λi and said second characteristic polarization state P2 when first and second information value storage locations are being read from said second information storage structure.
- 4. The information storage device of claim 1, wherein said first characteristic polarization state P1 is a left-handed circularly polarized (LHCP) state and said second characteristic polarization state P2 is a right-handed circularly polarized (RHCP) state.
- 5. The information storage device of claim 1, wherein each first or second information value storage location recorded in said first and second information storage structures is made from a cholesteric liquid crystal (CLC) material.
- 6. The information storage device of claim 1, wherein said CLC material comprises one or more materials selected from the group consisting of the polymeric liquid crystals, such as polysiloxanes, di-acrylates, di-epoxides, di-vinylethers, and chiral nematic liquid crystals.
- 7. The information storage device of claim 1, wherein each first or second information value storage location recorded in said first and second information storage structures is made from an artificial chiral film.
- 8. The information storage device of claim 1, wherein each said first or second information value storage location recorded in said first and second information storage structures is realized from multiple layers of dielectric material.
- 9. The information storage device of claim 1,
wherein said first plurality of first and second information value storage locations are recorded along a first information storage track arrangement in said first information storage structure, wherein said second plurality of first and second information value storage locations are recorded along a first information storage track arrangement in said second information storage structure, and wherein said first and second information storage track arrangements are registered so as to permit simultaneous reading of information values along said first and second information storage tracks using a laser beam having first and second spectral components.
- 10. The information storage device of claim 1, wherein said first and second information values represent a digital carrier signal whose frequency is modulated by an analog information signal.
- 11. The information storage device of claim 1, wherein said first and second information storage structures are made in the form of a disc.
- 12. The information storage device of claim 1, wherein said first and second information storage structures are made in the form of tape.
- 13. The information storage device of claim 1, wherein said first and second information storage structures are made in the form of a card.
- 14. The information storage device of claim 1, which further comprises one or more interlayers of material disposed between said first and second information storage structures.
- 15. The information storage device of claim 1, which further comprises an optically transparent protective cover layer disposed over said first information storage structure.
- 16. An multi-layered information storage device comprising:
a plurality of information storage layers indexable as i=1,2,3, . . . , N, and collectively stacked together to form a composite structure; wherein each said i-th information storage layer includes a first information storage structure mounted adjacent to a second information storage structure; wherein said first information storage structure in each said i-th information storage layer has a first plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said first information storage structure of said i-th information storage layer has a first characteristic wavelength band Δλa and a first characteristic polarization state P1 which is orthogonal to a second characteristic polarization state P2, and reflects spectral components that are incident thereto and have a wavelength within said first characteristic wavelength band Δλa and a polarization state equal to said first characteristic polarization state P1, and each said second information value storage location recorded in said first information storage structure of said i-th information storage layer transmits spectral components that are incident thereto and have either a wavelength outside of said first characteristic wavelength band Δλa or a polarization state which is equal to said second characteristic polarization state P2; and wherein said second information storage structure of each said i-th information storage layer has a second plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said second information storage structure of said i-th information storage layer has said second characteristic polarization state P2 and a second characteristic wavelength band Δλb overlapping at least a partial portion of said first characteristic wavelength band Δλa about a prespecified wavelength λi, and reflects spectral components that are incident thereto and have a wavelength within said second characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2, and each said second information value storage location recorded in said second information storage structure of said i-th information storage layer transmits spectral components that are incident thereto and have either a wavelength outside of said second characteristic wavelength band Δλb or a polarization state equal to said first characteristic polarization state P1.
- 17. The information storage and retrieval system of claim 16, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 18. The information storage device of claim 16, wherein said spectral components comprise
a first spectral component having said prespecified wavelength λi and said first characteristic polarization state P1 when first and second information value storage locations are being read from said first information storage structure of said i-th information storage layer, and a second spectral component having said prespecified wavelength λi and said second characteristic polarization state P2 when first and second information value storage locations are being read from said second information storage structure of said i-th information storage layer.
- 19. The information storage device of claim 16, wherein said first characteristic polarization state P1 is a left-handed circularly polarized (LHCP) state and said second characteristic polarization state P2 is a right-handed circularly polarized (RHCP) state.
- 20. The information storage device of claim of claim 16, wherein each first information value storage location recorded in said first and second information storage structures is made from a cholesteric liquid crystal (CLC) material.
- 21. The information storage device of claim 16, wherein each first or second information value storage location recorded in said first and second information storage structures of each said i-th information storage layer is made from an artificial chiral film.
- 22. The information storage device of claim 16, wherein each said first or information value storage location recorded in said first and second information storage structures of each said i-th information storage layer is realized from multiple layers of dielectric material.
- 23. The information storage device of claim 16, wherein said first and second information values represent a digital carrier signal whose frequency is modulated by an analog information signal.
- 24. The information storage device of claim 16,
wherein said first plurality of first and second information value storage locations recorded in the first information storage structure of said i-th information storage layer is recorded along a first information storage track arrangement in said first information storage structure, wherein said second plurality of first and second information value storage locations recorded in the second information storage structure of said i-th information storage layer is recorded along a first information storage track arrangement in said second information storage structure, and wherein said first and second information storage track arrangements are aligned so as to permit reading of information values recorded along said first and second information storage tracks using a laser beam having first and second spectral components.
- 25. The information storage device of claim 16, made in the form of a disc.
- 26. The information storage device of claim 16, made in the form of tape.
- 27. The information storage device of claim 16, made in the form of a card.
- 28. The information storage device of claim 16, which further comprises one or more interlayers of material disposed between said first and second information storage structures of each said i-th information storage layers.
- 29. The information storage device of claim 16, which further comprises an optically transparent protective cover layer disposed over said first information storage structure of said i-th information storage layer.
- 30. A multi-decked information storage device comprising:
a plurality of information storage decks indexable as m=1,2,3, . . . , M, and collectively stacked together to form a composite structure; wherein each said information storage deck includes a plurality of information storage layers indexable as i=1,2,3, . . . , N, and collectively stacked together to form a composite substructure, wherein each said i-th information storage layer includes a first information storage structure mounted adjacent to a second information storage structure, wherein said first information storage structure in each said i-th information storage layer has a first plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said first information storage structure of said i-th information storage layer has a first characteristic wavelength band Δλa and a first characteristic polarization state P1 which is orthogonal to a second characteristic polarization state P2, and reflects spectral components that are incident thereto and have a wavelength within said first characteristic wavelength band Δλa and a polarization state equal to said first characteristic polarization state P1, and each said second information value storage location recorded in said first information storage structure of said i-th information storage layer transmits spectral components that are incident thereto and have either a wavelength outside of said first characteristic wavelength band Δλa or a polarization state equal to said second characteristic polarization state P2, and wherein said second information storage structure of each said i-th information storage layer has a second plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said second information storage structure of said i-th information storage layer has said characteristic polarization state P2 and a second characteristic wavelength band Δλb overlapping at least a portion of said first characteristic wavelength band Ada about a prespecified wavelength λi and reflects spectral components that are incident thereto and have a wavelength within said second characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2 and each said second information value storage location recorded in said second information storage structure of said i-th information storage layer transmits spectral components that are incident thereto and have either a wavelength outside of said second characteristic wavelength band Δλb or a polarization state equal to said first characteristic polarization state P1.
- 31. The information storage and retrieval system of claim 30, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 32. The information storage device of claim 30, wherein said spectral components are provided by a first laser beam having said prespecified wavelength λi and said first characteristic polarization state P1 when first and second information value storage locations are being read from said first information storage structure of said i-th information storage layer, and wherein said spectral components are provided by a second laser beam having said prespecified wavelength λi and second characteristic polarization state P2 when first and second information value storage locations are being read from said second information storage structure of said i-th information storage layer.
- 33. The information storage device of claim 30, wherein said first characteristic polarization state P1 is a left-handed circularly polarized (LHCP) state and said second characteristic polarization state P2 is a right-handed circularly polarized (RHCP) state.
- 34. The information storage device of claim of claim 30, wherein each first or second information value storage location recorded in said first and second information storage structures of each said i-th information storage layer is made from a cholesteric liquid crystal (CLC) material.
- 35. The information storage device of claim 34, wherein said CLC material comprises one or more materials selected from the group consisting of the polymeric liquid crystals, such as polysiloxanes, di-acrylates, di-epoxides, di-vinylethers, and chiral nematic liquid crystals with chiral additives.
- 36. The information storage device of claim 30, wherein each said first or second information value storage location recorded in said first and second information storage structures of each said i-th information storage layer is realized from multiple layers of dielectric material.
- 37. The information storage device of claim 30, wherein each first or second information value storage location recorded in said first and second information storage structures is made from an artificial chiral film.
- 38. The information storage device of claim 30,
wherein said first plurality of first and second information value storage locations recorded in the first information storage structure of said i-th information storage layer is recorded along a first information storage track arrangement in said first information storage structure of said i-th information storage layer, wherein said second plurality of first and second information value storage locations recorded in the second information storage structure of said i-th information storage layer is recorded along a first information storage track arrangement in said second information storage structure of said i-th information storage layer, and wherein said first and second information storage track arrangements are registered so as to permit reading of information values along said first and second information storage tracks using a laser beam having first and second spectral components.
- 39. The information storage device of claim 30, made in the form of a disc.
- 40. The information storage device of claim 30, made in the form of tape.
- 41. The information storage device of claim 30, made in the form of a card.
- 42. The information storage device of claim 30, which further comprises one or more interlayers of material disposed between said first and second information storage structures of each said i-th information storage layers.
- 43. The information storage device of claim 30, which further comprises an optically transparent protective cover layer disposed over said first information storage structure of each said i-th information storage layer.
- 44. An information storage and retrieval system for reading information values recorded in an information storage device constructed from an optical based storage media, said information storage and retrieval system comprising:
light beam producing means for producing, during each information reading operation, a light beam consisting of at least
a first spectral component having a prespecified wavelength λi and a polarization state equal to a first characteristic polarization state P1, and/or a second spectral component having said prespecified wavelength λi and a polarization state equal to a second characteristic polarization state P2 which is orthogonal to said characteristic polarization state P1; supporting means for supporting, during each said information reading operation, an information storage device including a pair of first and second information storage structures arranged as a composite structure,
said first information storage structure having a first plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said first information storage structure is characterized by a first characteristic wavelength band Δλa and said first characteristic polarization state P1, and reflects spectral components that are incident thereto and have a wavelength within said first characteristic wavelength band Δλa and a polarization state equal to said first characteristic polarization state P1, and each said second information value storage location recorded in said first information storage structure transmits spectral components that are incident thereto and have either a wavelength outside of said first characteristic wavelength band Δλa or a polarization state equal to said second characteristic polarization state P2, and said second information storage structure having a second plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said second information storage structure is characterized by and said second characteristic polarization state P2 and a second characteristic wavelength band Δλb overlapping at least a portion of said first characteristic wavelength band Δλa about said prespecified wavelength λi, and reflects spectral components that are incident thereto and have a wavelength within said second characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2, and each said second information value storage location recorded in said second information storage structure transmits spectral components that are incident thereto and have either a wavelength outside of said second characteristic wavelength band Δλb or a polarization state equal to said first characteristic polarization state P1; light focusing means for focusing said light beam during the reading of information values from said first and/or second information storage structures; light detection means for detecting said first and second spectral components; spectral component analyzing means for analyzing the spectral components detected by said light detection means, determining the information values recorded on said first information storage structure producing a first data stream representative thereof, for determining the information values recorded on said second information storage structure and producing a second data stream representative thereof; and information access control means for controlling the operation of said light beam producing means during each said information reading operation.
- 45. The information storage and retrieval system of claim 44, which further comprises
moving means for moving said information storage device relative to said focused laser beam so that,
during the reading of information from said first information storage structure, the first spectral component of said laser beam is reflected from one or more of said first plurality of first and second information value storage locations recorded in said first information storage structure, and during the reading of information from said second information storage structure, the second spectral component of said focused laser beam is reflected from one or more of said first plurality of said information value storage locations recorded in said second information storage structure.
- 46. The information storage and retrieval system of claim 44, wherein said spectral component analyzing means comprises
a first spectral component analyzing means for analyzing said first spectral component of said focusing laser beam reflected off said first information storage structure and detected by said light detection means, and automatically determining the information values recorded on said first information storage structure, and producing a first data stream representative thereof, and a second spectral component analyzing means for analyzing said second spectral component of said focused laser beam reflected off said second information storage structure and detected by said light detection means, automatically determining the information values recorded on said second information storage structure, and producing a second data stream representative thereof.
- 47. The information storage and retrieval system of claim 44, wherein said light beam is a laser beam.
- 48. The information storage and retrieval system of claim 44, which further comprises:
interface means for interfacing said information storage and retrieval system with a host computer system.
- 49. The information storage and retrieval system of claim 44, which further comprises
address translation means for translating a logical address assigned to each said information value storage location in said first and second information storage structures, into a physical address specifying the physical location of said information value storage location in said information storage device.
- 50. The information storage and retrieval system of claim 44, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 51. The information storage and retrieval system of claim 44,
wherein when said first and second information value storage locations are being read from said first information storage structure, said light producing means produces under the control of said information access control means, a laser beam having said first spectral component, and wherein when first and second information value storage locations are being read from said second information storage structure, said light producing means produces under the control of said information access control means, a laser beam having said second spectral component.
- 52. The information storage and retrieval system of claim 44, wherein each said first and second information value storage location recorded in said first and second information storage structures is made from a cholesteric liquid crystal (CRC) material.
- 53. The information storage and retrieval system of claim 44, wherein each first information value storage location recorded in said first and second information storage structures is realized from multiple layers of dielectric material.
- 54. The information storage device of claim 44, wherein each first or second information value storage location recorded in said first and second information storage structures is made from an artificial chiral film.
- 55. The information storage and retrieval system of claim 44, wherein said first characteristic polarization state P1 is a left-handed circularly polarized (LIICP) state and said second characteristic polarization state P2 is a right-handed circularly polarized (RHCP) state.
- 56. The information storage and retrieval system of claim 44, wherein said first characteristic polarization state P1 is a left-handed circularly polarized (LHCP) state and said second characeristic polarization state P2 is a right-handed circularly polarized (RHCP) state, and wherein said light beam comprises a linear polarized light beam comprising said first and second spectral components.
- 57. The information storage and retrieval system of claim 56, wherein said light detection means comprises
a first means for detecting spectral components having a wavelength within said first characteristic wavelength band Δλb and a polarization state equal to said RHCP state.
- 58. The information storage and retrieval system of claim 44,
wherein said first plurality of first and second information value storage locations are recorded along a first information storage track arrangement in said first information storage structure, said second plurality of first and second information value storage location are recorded along a first information storage track arrangement in said second information storage structure, and first and second information storage track arrangements are precisely registered between said first and second information storage structures, respectively;
- 59. The information storage and retrieval system of claim 44, wherein said information storage device is realized in the form of a compact disc, and said support means comprises means for supporting and rotating said compact disc at a predetermined angular velocity.
- 60. The information storage and retrieval system of claim 44, wherein said information storage device is realized in the form of a compact card, and said support means comprises means for supporting said compact card.
- 61. An information storage and retrieval system for reading information values recorded in an information storage device constructed from multiple layers of optical storage media, said information storage and retrieval system comprising:
light beam producing means for producing a light beam including
a first spectral component having a prespecified wavelenght λi and a first characteristic polarization state P1, and/or a second spectral component having said prespecified wavelength λi and a second component polarization state P2 orthoganal to said first characteristic polarization state P1; spectral component selection means for selecting the production of either said first spectral component and/or second spectral component during each information reading operation; supporting means for supporting, during each said information reading operation, an information storage device constructed from a plurality of information storage layers of optical storage media indexable as i=1, 2, 3. . . . , N, and collectively being stacked together to form a composite structure, wherein each said i-th information storage layer includes a first information storage structure disposed adjacent a second information storage structure, said first information storage structure having a first plurality of first and second information value storage locations recorded in said first information storage structure of said i-th information storage layer is characterized by a first characteristic wavelength band Δλa and said first characteristic polarization state P1, and reflects spectral components that are incident thereto and have a wavelenght within said first characteristic wavelength band Δλa and a polarization state equal to said first characteristic polarization state P1, and each said second information value storage location recorded in said first information storage structure of said i-th information storage layer transmits spectral components that are incident thereto and have either a wavelength outside of said first characteristic wavelength band Δλa or a polarization state equal to said second characteristic polarization state P2, and said second information storage structure of said i-th information storage layer having a second plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said second information storage structure of said i-th information storage layer is characterized by said second characteristic polarization state P2 and a second characteristic wavelength wavelength band Δλb about said prespecified wavelength λi, and reflects spectral components that are incident thereto and have a wavelength within said second characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2, and each said second information value storage location recorded in said second information storage structure of said i-th information storage layer transmits spectral components that are incident thereto and band Δλb or a polarization state equal to said first characteristic polarization state P1; light detection means analyzing means for analyzing the spectral components detected by said light detection means, determining the information values recorded on said first information storage structure of said i-th information storage layer and producing a first data stream representative thereof, and determining the information values recorded on said second information storage structure of said i-th information storage layer and producing a second data stream representative thereof; and information access control means for controlling the operation of said light beam producing means and said spectral component selection means during each said information reading operation.
- 62. The information storage and retrieval system of claim 61, which further comprises
moving means for moving said information storage device relative to said focused laser beam so that. during the reading of information from said first information storage structure of said i-th information from said first information component of said laser beam is reflected from one or more of said first plurality of first and second information value storage locations recorded in said first inforamtion storage structure, and during the reading of information from said second information storage structure of said i-th information storage layer, the second spectral component of said focused laser beam is reflected from one or more of said first plurality of said information value storage locations recoreded in said second information storage structure.
- 63. The information storage and retrieval system of claim 61, wherein said spectral component analyzing means comprises
a first spectral component analyzing means for analyzing said first spectral component of said focusing laser beam reflected off said first information storage structure of said i-th information storage layer and detected by said light detection means, and automatically determining the information values recoreded on said first information storage structure of said i-th information storage layer, and producing a first data stream representative thereof, and a second spectral component analyzing means for analyzing said second spectral component of said focused laser beam reflected off said and detected by said light detection means, automatically determining the information values recorded on said second information storage structure of said i-th information storage layer, and producing a second data stream representive thereof.
- 64. The information storage and retrieval system of claim 61, wherein said light beam is a laser beam.
- 65. The information storage and retrieval system of claim 61, which further comprises:
interface means for interfacing said information storage and retrieval system with a host computer system.
- 66. The information storage and retrieval system of claim 61, which further comprises
address translation means for translating a logical address assigned to each said information value storage location in said first and second information storage structures of said i-th information storage layer, into a physical address specifying the physical location of said information value storage location in said information storage device.
- 67. The information storage and retrieval system of claim 61, wherein each said first information value storage location stores a logical ‘’ and each said second information value storage location stores a locgical ‘0’.
- 68. The information storage and retrieval system of claim 61,
wherein when said first and storage information value storage locations are being read from siad first information storage structure of said i-th information storage layer, said light producing means produces under the control of said information access control means, a laser beam having said first spectral component, and wherein when first and second information value storage locations are being read from said second information storage structure of said i-th information storage layer, said light producing means produces under the control of said information access control means, a laser beam having said second spectral component.
- 69. The information storage and retrieval system of claim 61, wherein each said first or second information value storage location recorded in said first and second information storage structure of each said i-th information storage layer is made from a cholesteric liquid crystal (CLC) material.
- 70. The information storage device a claim 61, wherein each first or second information value storage location recorded in said first and second information storage structures of each i-th information storage layer is made from an artificial chiral film.
- 71. The information storage and retrieval system of claim 61, wherein each said first or second information value storage location recorded in said first and second information storage structures of each said i-th information storage layer is realized from multiple layer of dielectric material.
- 72. The information storage and retrieval system of claim 61, wherein said first characteristic polarization state P1 is a left-handed circularly polarized (LHCP) state and said second characteristic polarization state P2 is a right-handed circularly polarized (RHCP) state.
- 73. The information storage and retrieval system of claim 61, wherein said first characteristic polarization state P1 is a left-handed circularly polarized (LHCP) state and said second characteristic polarization state P2 is a right-handed circularly polarized (RHCP) state, and wherein said light beam comprises a linear polarized light beam comprising said first and second spectral components.
- 74. The infomation storage and retrieval system of claim 73, wherein said light detection means comprises
a first means for detecting spectral components having a wavelength within said first characteristic wavelength band Δλa and a polarization state equal to said LHCP state, and a second means for detecting spectral components having a wavelength within said first characteristic wavelength band Δλb and a second polarization state equal to said RHCP state.
- 75. The information storage and retrieval system of claim 61,
wherein said first plurality of first and second information value storage locations are recorded along a first information storage track arrangement in said first information storage structure of said i-th information storage layer, said second plurality of first and second information value storage locations are recorded along a first information storage track arrangement in said second information storage structure of said i-th information storage layer, and said first and second information storage track arrangements are registered between said first and second information storage structures of said i-th information storage layer; wherein said light producing means produces during each information reading operation, a light beam comprising said first and second spectral components, thereby permitting reading of information values recorded in said first and second information storage structures of said i-th information storage layer.
- 76. The information storage and retrieval system of claim 61, wherein said information storage device is realized in the form of a compact disc, and said support means comprises means for supporting and rotating said compact disc at a predetermined angular velocity.
- 77. The information storage and retrieval system of claim 61, said support means comprises means for supporting and transporting said tape at a predetermined velocity.
- 78. The information storage and retrieval system of claim 61, wherein said information storage device is realized in the form of a compact card, and said support means comprises means for supporting said compact card.
- 79. An information storage and retrieval system for reading information values recorded in an information storage device constructed from multiple layers of optical storage media, said information storage and retrieval system comprising:
light beam producing means for producing a light beam including
a first spectral component having a prespecified wavelength λi and a first characteristic polarization state P1, and/or a second spectral component having said prespecified wavelength λi and a second characteristic polarization state P2 orthogonal to said first characteristic polarization state P1; spectral component selection means for selecting the production of either said first spectral component and/or second spectral component during each information reading operation; supporting means for supporting, during each said information reading operation, a multi-decked information storage device constructed from a plurality of information storage decks of optical storage media, indexable as m=1,2,3, . . . ,M, and collectively being stacked together to form a composite structure, wherein each said information storage deck includes a plurality of information storage layers indexable as i=1,2,3, . . . , N, and collectively being stacked together to form a composite substructure of said composite structure, wherein each said i-th information storage layer in said m-th information storage deck includes a first information storage structure supported adjacent to a second information storage structure,
said first information storage structure of each said i-th information storage layer in said m-th information storage deck having a first plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said first information storage structure of each said i-th information storage layer in said m-th information storage deck is characterized by a first characteristic wavelength band Δλa and said first characteristic polarization state P1, and reflects spectral components that are incident thereto and have a wavelength within said first characteristic wavelength band Δλa and a polarization state equal to said first characteristic polarization state P1, and each said second information value storage location recorded in said first information storage structure of each said i-th information storage layer in said m-th information storage deck transmits spectral components that are incident thereto and have either a wavelength outside of said first characteristic wavelength band Δλa or a polarization state equal to said characteristic polarization state P2, and said second information storage structure of each said i-th information storage layer in said m-th information storage deck having a second plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said second information storage structure of each said i-th information storage layer in said m-th information storage deck is characterized by said second characteristic polarization state P2 and a second characteristic wavelength band Δλb overlapping at least a portion of said first characteristic wavelength band Δλa about said prespecified wavelength λi, and reflects spectral components that are incident thereto and have a wavelength within said characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2, and each said second information value storage location recorded in said second information storage structure of each said i-th information storage layer in said m-th information storage deck transmits spectral components that are incident thereto and have either a wavelength outside of said characteristic wavelength band Δλb or a polarization state equal to said first characteristic polarization state P1; light focusing means for focusing said light beam onto a selected information storage layer in a selected one of said information storage decks while reading said first and second information value storage locations from said first and/or second information storage structures of said i-th information storage layer within said selected information storage deck; light detection means for detecting said first and second spectral components; spectral component analyzing means for analyzing the spectral components detected by said light detection means, determining the information values recorded on said first information storage structure of said i-th information storage layer in said selected information storage deck and producing a first data stream representative thereof, and determining the information values recorded on said second information storage structure of each said i-th information storage layer in said selected information storage deck and producing a second data stream representative thereof; and information access control means for controlling the operation of said light beam producing means and said spectral component selection means during each said information reading operation.
- 80. The information storage and retrieval system of claim 79, which further comprises
moving means for moving said information storage device relative to said focused laser beam so that,
during the reading of information from said first information storage structure of said selected information storage layer in said selected information storage deck, the first spectral component of said laser beam is reflected from one or more of said first plurality of first and second information value storage locations recorded in said first information storage structure thereof, and during the reading of information from said second information storage structure of said selected information storage layer in said selected information storage deck, the second spectral component of said focused laser beam is reflected from one or more of said first plurality of said information value storage locations recorded in said second information storage structure thereof.
- 81. The information storage and retrieval system of claim 79, wherein said spectral component analyzing means comprises
a first spectral component analyzing means for analyzing said first spectral component of said focusing laser beam reflected off said first information storage structure of said selected information storage layer and detected by said light detection means, and automatically determining the information values recorded on said first information storage structure of said selected information storage layer, and producing a first data stream representative thereof, and a second spectral component analyzing means for analyzing said second spectral component of said focused laser beam reflected off said second information storage structure of said selected information storage layer and detected by said light detection means, automatically determining the information values recorded on said second information storage structure of said selected information storage layer, and producing a second data stream representative thereof.
- 82. The information storage and retrieval system of claim 79, wherein said light beam is a laser beam.
- 83. The information storage and retrieval system of claim 79, which further comprises
address translation means for translating a logical address assigned to each said information value storage location in said first and second information storage structures of said selected information storage layer, into a physical address specifying the physical location of said information value storage location in said information storage device.
- 84. The information storage and retrieval system of claim 79, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 85. The information storage and retrieval system of claim 79,
wherein when said first and second information value storage locations are being read from said first information storage structure of said selected information storage layer, said light producing means produces under the control of said information access control means, a laser beam having said first spectral component, and wherein when first and second information value storage locations are being read from said second information storage structure of said selected information storage layer, said light producing means produces under the control of said information access control means, a laser beam having said second spectral component.
- 86. The information storage and retrieval system of claim 79, wherein each first information value storage location recorded in said first and second information storage structures is made from a cholesteric liquid crystal (CLC) material.
- 87. The information storage device of claim 79, wherein each first or second information value storage location recorded in said first and second information storage structures is made from artificial chiral films.
- 88. The information storage and retrieval system of claim 79, wherein each first information value storage location recorded in said first and second information storage structures is realized from multiple layers of dielectric material.
- 89. The information storage and retrieval system of claim 79, wherein said first characteristic polarization state P1 is a left-handed circularly polarized (LHCP) state and said second characteristic polarization state P2 is a right-handed circularly polarized (RHCP) state.
- 90. The information storage and retrieval system of claim 79, wherein said first characteristic polarization state P1 is a left-handed circularly polarized (LHCP) state and said second characteristic polarization state P2 is a right-handed circularly polarized (RHCP) state, and wherein said light beam comprises a linear polarized light beam comprising said first and second spectral components.
- 91. The information storage and retrieval system of claim 90, wherein said light detection means comprises
a first means for detecting spectral components having wavelengths about said prespecified wavelength λi and a polarization state equal to said LHCP state, and a second means for detecting spectral components having wavelengths about said prespecified wavelength λi and a polarization state equal to said RHCP state.
- 92. The information storage and retrieval system of claim 90, wherein said LHCP state is realized using a left-handed cholesteric liquid crystal (CLC) material and said RHCP state is realized using a right-handed CLC material.
- 93. The information storage and retrieval system of claim 79,
wherein said first plurality of first and second information value storage locations are recorded along a first information storage track arrangement in said first information storage structure of said selected information storage layer, said second plurality of first and second information value storage locations are recorded along a first information storage track arrangement in said second information storage structure of said selected information storage layer, and said first and second information storage track arrangements are registered between said first and second information storage structures of said selected information storage layer; wherein said light producing means produces during each information reading operation, a light beam comprising said first and second spectral components, thereby permitting reading of information values recorded in said first and second information storage structures of said selected information storage layer.
- 94. The information storage and retrieval system of claim 79, wherein said information storage device is realized in the form of a compact disc, and said support means comprises means for supporting and rotating said compact disc at a predetermined angular velocity.
- 95. The information storage and retrieval system of claim 79, said support means comprises means for supporting and transporting said tape at a predetermined velocity.
- 96. The information storage and retrieval system of claim 79, wherein said information storage device is realized in the form of a compact card, and said support means comprises means for supporting said compact card.
- 97. An information storage device comprising:
a first information storage structure having a first undulated surface and first plurality of first and second information value storage locations recorded therein, wherein each said first and second information value storage location recorded in said first undulated surface
is characterized by a first characteristic wavelength band Δλa and a first characteristic polarization state P1, reflects spectral components that are incident thereto and have a wavelength within said first characteristic wavelength band Δλa and a polarization state equal to said first characteristic polarization state P1, and transmits spectral components that are incident thereto and have either a wavelength outside of said first characteristic wavelength band Δλa or a polarization state which is equal to a second characteristic polarization state P2 orthogonal to said first characteristic polarization state P1; and a second information storage structure mounted to said first said information storage structure, and having a second undulated surface and second plurality of first and second information value storage locations recorded therein, wherein each said first and second information value storage location recorded in said second undulated surface
is characterized by said second characteristic polarization state P2, and a second characteristic wavelength band Δλb overlapping at least a portion of said first characteristic wavelength band about said prespecified wavelength λi, reflects spectral components that are incident thereto and have a wavelength within said second characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2, and transmits spectral components that are incident thereto and have either a wavelength outside of said characteristic wavelength band Δλb or a polarization state equal to said first characteristic polarization state P1.
- 98. The information storage and retrieval system of claim 97, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 99. The information storage device of claim 97,
wherein said spectral components are provided by a first laser beam when first and second information value storage locations are being read from said first information storage structure, and wherein said spectral components are provided by a second laser beam when first and second information value storage locations are being read from said second information storage structure.
- 100. The information storage device of claim 97, wherein said first characteristic polarization state P1 is a left-handed circularly polarized (LHCP) state and said second characteristic polarization state P2 is a right-handed circularly polarized (RHCP) state.
- 101. The information storage device of claim 97, wherein each first or second information value storage location recorded in said first and second information storage structures is made from a cholesteric liquid crystal (CLC) material.
- 102. The information storage device of claim 97, wherein each first or second information value storage location recorded in said first and second information storage structures is made from artificial chiral films.
- 103. The information storage device of claim 97, wherein said CLC material comprises one or more materials selected from the group consisting of the polymeric liquid crystals, such as polysiloxanes, di-acrylates, di-epoxides, di-vinylethers, and chiral nematic liquid crystals.
- 104. The information storage device of claim 97, wherein said first information value storage location recorded in said first and second information storage structures is realized from multiple layers of dielectric material.
- 105. The information storage device of claim 97,
wherein said first plurality of first and second information value storage locations are recorded along a first information storage track arrangement in said first information storage structure, wherein said second plurality of first and second information value storage locations are recorded along a first information storage track arrangement in said second information storage structure, and wherein said first and second information storage track arrangements are registered so as to permit reading of information values along said first and second information storage tracks using a laser beam having first and second spectral components.
- 106. The information storage device of claim 97, wherein said first and second information values represent a digital carrier signal whose frequency is modulated by an analog information signal.
- 107. The information storage device of claim 97, wherein said first and second information storage structures are made in the form of a disc.
- 108. The information storage device of claim 97, wherein said first and second information storage structures are made in the form of tape.
- 109. The information storage device of claim 97, wherein said first and second information storage structures are made in the form of a card.
- 110. The information storage device of claim 97, which further comprises one or more interlayers of material disposed between said first and second information storage structures.
- 111. The information storage device of claim 97, which further comprises an optically transparent protective cover layer disposed over said first information storage structure.
- 112. An information storage and retrieval system for reading information values recorded in an information storage device constructed from an optical based storage media, said information storage and retrieval system comprising:
light beam producing means for producing, during each information reading operation, a light beam consisting of at least
a first spectral component having a prespecified wavelength λi and a first characteristic polarization state P1, and/or a second spectral component having said prespecified wavelength λi and a second characteristic polarization state P2 orthogonal to said first characteristic polarization state P1; supporting means for supporting, during each said information reading operation, an information storage device including a pair of first and second information storage structures, said first information storage structure having a first undulated surface and first plurality of first and second information value storage locations recorded therein, wherein each said first and second information value storage location recorded in said first undulated surface
is characterized by a first characteristic wavelength band Δλa and a polarization state equal to said first characteristic polarization state P1, reflects spectral components that are incident thereto and have a wavelength within said first characteristic wavelength band Δλa and a polarization state equal to said first characteristic polarization state P1 and transmits spectral components that are incident thereto and have either a wavelength outside of said first characteristic wavelength band Δλa or a polarization state which is equal to said second characteristic polarization state P2, and said second information storage structure having a second undulated surface and second plurality of first and second information value storage locations recorded therein, wherein each said first and second information value storage location recorded in said second undulated surface
is characterized by a polarization state equal to said second characteristic polarization state P2 and a second characteristic wavelength band Δλb overlapping at least a portion of said first characteristic wavelength band Δλa about said prespecified wavelength λi. reflects spectral components that are incident thereto and have a wavelength within said second characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2 and transmits spectral components that are incident thereto and have either a wavelength outside of said second characteristic wavelength band Δλb or a polarization state equal to said first characteristic polarization state P1; light focusing means for focusing said light beam during the reading of information values from said first and/or second information storage structures; light detection means for detecting said first and second spectral components; spectral component analyzing means for analyzing the spectral components detected by said light detection means, determining the information values recorded on said first undulated surface producing a first data stream representative thereof, for determining the information values recorded on said second undulated surface and producing a second data stream representative thereof; and information access control means for controlling the operation of said light beam producing means during each said information reading operation.
- 113. The information storage and retrieval system of claim 112, which further comprises
moving means for moving said information storage device relative to said focused laser beam so that,
during the reading of information from said first information storage structure, the first spectral component of said laser beam is reflected from one or more of said first plurality of first and second information value storage locations recorded in said first information storage structure, and during the reading of information from said second information storage structure, the second spectral component of said focused laser beam is reflected from one or more of said first plurality of said information value storage locations recorded in said second information storage structure.
- 114. The information storage and retrieval system of claim 112, wherein said spectral component analyzing means comprises
a first spectral component analyzing means for analyzing said first spectral component of said focusing laser beam reflected off said first information storage structure and detected by said light detection means, and automatically determining the information values recorded on said first information storage structure, and producing a first data stream representative thereof, and a second spectral component analyzing means for analyzing said second spectral component of said focused laser beam reflected off said second information storage structure and detected by said light detection means, automatically determining the information values recorded on said second information storage structure, and producing a second data stream representative thereof.
- 115. The information storage and retrieval system of claim 112, wherein said light beam is a laser beam.
- 116. The information storage and retrieval system of claim 112,, which further comprises:
interface means for interfacing said information storage and retrieval system with a host computer system.
- 117. The information storage and retrieval system of claim 112, which further comprises
address translation means for translating a logical address assigned to each said information value storage, location in said first and second information storage structures, into a physical address specifying the physical location of said information value storage location in said information storage device.
- 118. The information storage and retrieval system of claim 112, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 119. The information storage and retrieval system of claim 112,
wherein when said first and second information value storage locations are being read from said first information storage structure, said light producing means produces under the control of said information access control means, a laser beam having said first spectral component, and wherein when first and second information value storage locations are being read from said second information storage structure, said light producing means produces under the control of said information access control means, a laser beam having said second spectral component.
- 120. The information storage and retrieval system of claim 112, wherein each first information value storage location recorded in said first and second information storage structures is made from a cholesteric liquid crystal (CLC) material. information storage structures mounted adjacent each other to form a composite structure,
wherein said first information storage structure has first plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said wavelength hand Δλa and a first characteristic polarization state P1 orthogonal to a characteristic polarization state P2, and reflects spectral components that are incident thereto and have a wavelength within said first characteristic wavelength band Δλa and a polarization state that is equal to said first characteristic polarization state which is equal to said second characteristic polarization state P2 and wherein said second information storage structure has second plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said second information storage structure is characterized by said second characterized polarization state P2 and a second characteristic wavelength band Δλb overlapping at least a portion or said first characteristic wavelength band Δλa about a prespecified wavelength λi, and reflects spectral components that are incident thereto and have a wavelength within said characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2, a second means for detecting spectral components having wavelengths about said prespecified wavelength λi and a polarization state equal to said RHCP state.
- 126. The information storage and retrieval system of claim 112,
wherein said first plurality of first and second information value storage locations are recorded along a first information storage track arrangement in said first information storage structure, said second plurality of first and second information value storage locations are recorded along a first information storage track arrangement in said second information storage structure, and first and second information storage track arrangements are precisely registered between said first and second information storage structures, respectively; wherein said light producing means produces during each information reading operation, a laser beam consisting of at least said first spectral component and said second spectral component, thereby permitting simultaneous reading of information values recorded in said first and second information storage structures of said information storage device.
- 127. The information storage and retrieval system of claim 112, wherein said information storage device is realized in the form of a compact disc, and said support means comprises means for supporting and rotating said compact disc at a predetermined angular velocity.
- 128. The information storage and retrieval system of claim 112, wherein said information storage device is realized in the form of tape, and said support means comprises means for supporting and transporting said tape at a predetermined velocity.
- 129. The information storage and retrieval system of claim 112, wherein said information storage device is realized in the form of a compact card, and said support means comprises means for supporting said compact card.
- 130. The information storage and retrieval system of claim 112, wherein said information storage device further comprises a plurality of information storage layers indexable as i=1,2,3, . . . , N, and collectively stacked together to form a composite structure;
wherein each said i-th information storage layer includes one said first information storage structure mounted adjacent to one said second information storage structure; and wherein said light producing means further comprises
means for producing said first spectral component for reading information storage value locations on the first information storage structure of said i-th information storage layer, and means for producing said second spectral component for reading information storage value locations on the second information storage structure of said i-th information storage layer.
- 131. A method of retrieving information recorded in an information storage structure, comprising the steps:
(a) storing first and second information values in an information storage device which includes at least one pair of first and second information storage structures mounted adjacent each other to form a composite structure, wherein said first information storage structure has first plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said first information storage structure is characterized by a first characteristic wavelength band Δλa and a first characteristic polarization state P1 orthogonal to a characteristic polarization state P2, and reflects spectral components that are incident thereto and have a wavelength within said first characteristic wavelength band Δλa and a polarization state that is equal to said first characteristic polarization state P1, and each said second information value storage location recorded in said first information storage structure transmits spectral components that are incident thereto and have either a wavelength outside of said characteristic wavelength band Δλa or a polarization state which is equal to said second characteristic polarization state P2, and wherein said second information storage structure has second plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location recorded in said second information storage structure is characterized by said second characteristic polarization state P2 and a second characteristic wavelength band Δλb overlapping at least a portion of said first characteristic wavelength band Δλa about a prespecified wavelength λi and reflects spectral components that are incident thereto and have a wavelength within said characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2, and each said second information value storage location recorded in said second information storage structure transmits spectral components that are incident thereto and have either a wavelength outside of said second characteristic wavelength band Δλb or a polarization state which is equal to said first characteristic polarization state P1; and (b) receiving a first instruction from a host computer system to read information recorded on said first information storage structure; (c) in response to receiving said first instruction, producing a first spectral component having a wavelength equal to said first characteristic wavelength band Δλa and a polarization state equal to said first characteristic polarization state P1; (d) directing said first spectral component onto said first information storage structure; (e) detecting said first spectral component after said first spectral component has interacted with said first information storage structure, and producing a first electrical signal representative thereof; and (f) processing said produced a first electrical signal so as to determine the information values recorded on said first information storage structure, and producing first data representative thereof.
- 132. The method of claim 131, which further comprises
(g) receiving a second instruction from a host computer system to read information recorded on said second information storage structure; (h) in response to receiving said second instruction, producing a second spectral component having a polarization state equal to said second characteristic polarization state P2 and a prespecified wavelength λi within a second characteristic wavelength band Δλb overlapping at least a portion of said first characteristic wavelength band Δλa about said prespecified wavelength λi; (d) directing said second spectral component onto said second information storage structure; (e) detecting said second spectral component after said second spectral component has interacted with said second information storage structure, and producing a second electrical signal representative thereof; and (f) processing said produced a second electrical signal so as to determine the information values recorded on said second information storage structure, and producing second data representative thereof.
- 133. A method of retrieving information recorded in an information storage structure, comprising the steps:
(a) storing first and second information values in an information storage device which includes at least one pair of first and second information storage structures mounted adjacent each other to form a composite structure, wherein said first information storage structure has first plurality of first and second information value storage locations recorded therein, wherein each said first and second information value storage location recorded in said first information storage structure is characterized by a first characteristic wavelength band Δλa and a first characteristic polarization state P1, and reflects spectral components that are incident thereto and have a wavelength within said first characteristic wavelength band Δλa and a polarization state that is equal to said first characteristic polarization state P1, and transmits spectral components that are incident thereto and have either a wavelength outside of said first characteristic wavelength band Δλa or a polarization state which is equal to a second characteristic polarization state P2 orthogonal to said first polarization state P1, and wherein said second information storage structure has second plurality of first and second information value storage locations recorded therein, wherein each said first and second information value storage location recorded in said second information storage structure is characterized by said characteristic polarization state P2 and a second characteristic wavelength band Δλb overlapping at least a portion of said first characteristic wavelength band Δλa about a prespecified wavelength λi, and reflects spectral components that are incident thereto and have a wavelength within said characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2 and transmits spectral components that are incident thereto and have either a wavelength outside of said second characteristic wavelength band Δλb or a polarization state which is equal to said first characteristic polarization state P1; and (b) receiving a first instruction from a host computer system to read information recorded on said first information storage structure; (c) in response to receiving said first instruction, producing a first spectral component having a wavelength within said overlapping portion and a polarization state equal to said first characteristic polarization state P1; (d) directing said first spectral component onto said first information storage structure; (e) detecting said first spectral component after said first spectral component has interacted with said first information storage structure, and producing a first electrical signal representative thereof; and (f) processing said produced a first electrical signal so as to determine the information values recorded on said first information storage structure, and producing first data representative thereof.
- 134. The method of claim 133, which further comprises
(g) receiving a second instruction from a host computer system to read information recorded on said second information storage structure; (h) in response to receiving said second instruction, producing a second spectral component having a wavelength within said overlapping portion and a polarization state equal to said second characteristic polarization state P2; (d) directing said second spectral component onto said second information storage structure; (e) detecting said second spectral component after said second spectral component has interacted with said second information storage structure, and producing a second electrical signal representative thereof; and (f) processing said produced a second electrical signal so as to determine the information values recorded on said second information storage structure, and producing second data representative thereof.
- 135. The information storage and retrieval system of claim 44, which further comprises means for reading a conventional CD-ROM disc using.
- 136. A system for making the information storage device of claim 1.
- 137. A system for making the information storage device of claim 16.
- 138. A system for making the information storage device of claim 44.
- 139. A system for making the information storage device of claim 97.
- 140. An information storage device comprising:
a information storage structure having a plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location in each said information storage structure is realized from multiple layers of dielectric material.
- 142. The information storage and retrieval system of claim 140, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 143. An information storage device comprising:
a plurality of information storage structures indexable as i=1, 2, 3, . . . , N arranged as a composite structure, and each said i-th information storage structure having a plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location in each said i-th information storage layer is realized from multiple layers of dielectric material.
- 144. The information storage and retrieval system of claim 143, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 145. An information storage device comprising:
a information storage structure having a plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location in each said information storage structure is realized from an artificial chiral film.
- 146. The information storage and retrieval system of claim 145, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 147. An information storage device comprising:
a plurality of information storage structures indexable as i=1, 2, 3, . . . , N arranged as a composite structure, and each said i-th information storage structure having a plurality of first and second information value storage locations recorded therein, wherein each said first information value storage location in each said i-th information storage layer is realized from multiple layers of dielectric material.
- 148. The information storage and retrieval system of claim 147, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 149. An information storage device comprising:
an information storage structure having an undulated surface with first and second surface heights and plurality of first and second information value storage locations recorded therein corresponding to said first and second surface heights, respectively; and wherein each said first and second information value storage location recorded in said undulated surface
is characterized by a characteristic wavelength band Δλa defined about a prespecified wavelength λi, reflects spectral components that are incident thereto and have a wavelength within said characteristic wavelength band Δλa, and transmits spectral components that are incident thereto and have a wavelength outside of said characteristic wavelength band Δλa, so that an optical pick-up, arranged for detecting spectral components incident to said information storage structure, is capable of detecting at a first signal level, spectral components reflected from each said first information value storage location, and detecting at a second signal level different than said second signal level, spectral components reflected from each said second information value storage location.
- 150. The information storage device of claim 149, wherein each said first information value is a logical ‘1’ and each said second information value is a logical ‘0’.
- 151. The information storage device of claim 149, wherein said undulated surface is made from an artificial chiral film.
- 152. The information storage device of claim 142, wherein said undulated surface is made from a plurality of dielectric layers.
- 153. An information storage device comprising:
a plurality of information storage structures indexable as i=1, 2. 3, . . . , N and each said information storage structure having an undulated surface with first and second surface heights and plurality of first and second information value storage locations recorded therein corresponding to said first and second surface heights, respectively; and wherein each said first and second information value storage location recorded in said undulated surface of said i-th information storage structure
is characterized by a characteristic wavelength band Δλa defined about a prespecified wavelength λi, reflects spectral components that are incident thereto and have a wavelength within said characteristic wavelength band Δλa, and transmits spectral components that are incident thereto and have a wavelength outside of said characteristic wavelength band Δλa , so that an optical pick-up, arranged for detecting spectral components incident to said i-th information storage structure, is capable of detecting at a first signal level, spectral components reflected from each said first information value storage location in said i-th information storage structure, and detecting at a second signal level different than said second signal level, spectral components reflected from each said second information value storage location in said i-th information storage structure.
- 154. The information storage device of claim 153, wherein each said first information value is a logical ‘1’ and each said second information value is a logical ‘0’.
- 155. The information storage device of claim 153, wherein said undulated surface in each said i-th information storage structure is made from an artificial chiral film.
- 155. The information storage device of claim 153, wherein said undulated surface in each said i-th information storage structure is made from a plurality of dielectric layers.
- 156. An information storage and retrieval system for reading information values recorded in an information storage device constructed from an optical based storage media, said information storage and retrieval system comprising:
light beam producing means for producing a light beam including at least one spectral component having a wavelength within a characteristic wavelength band Δλi defined about a prespecified wavelength λi; supporting means for supporting, during each information reading operation, an information storage device including
a plurality of information storage structures indexable as i=1, 2. 3, . . . , N and each said i-th information storage structure having an undulated surface with first and second surface heights and plurality of first and second information value storage locations recorded therein corresponding to said first and second surface heights, respectively, and wherein each said first and second information value storage location recorded in said undulated surface of said i-th information storage structure is characterized by said characteristic wavelength band Δλi, reflects spectral components that are incident thereto and have a wavelength within said characteristic wavelength band Δλi, and transmits spectral components that are incident thereto and have a wavelength outside of said characteristic wavelength band Δλi; light focusing means for focusing said light beam during the reading of information values from said first and/or second information storage structures; light detecting means arranged for detecting spectral components incident to said i-th information storage structure, and detecting at a first signal level, spectral components reflected from each said first information value storage location in said i-th information storage structure, and detecting at a second signal level different than said second signal level, spectral components reflected from each said second information value storage location in said i-th information storage structure; spectral component analyzing means for analyzing the detected signal level of the spectral components detected by said light detection means, determining the information values recorded in said i-th information storage structure producing a first data stream representative thereof, and determining the information values recorded in said i-th information storage structure and producing a second data stream representative thereof; and information access control means for controlling the operation of said light beam producing means during each said information reading operation.
- 157. The information storage and retrieval system of claim 156, which further comprises
moving means for moving said information storage device relative to said focused laser beam so that,
during the reading of information from said i-th information storage structure, the spectral component of said incident light beam is reflected from one or more of said first plurality of first and second information value storage locations recorded in said i-th information storage structure.
- 158. The information storage and retrieval system of claim 156, wherein said light beam is a laser beam.
- 159. The information storage and retrieval system of claim 156, which further comprises:
interface means for interfacing said information storage and retrieval system with a host computer system.
- 160. The information storage and retrieval system of claim 156, which further comprises
address translation means for translating a logical address assigned to each said information value storage location in said first and second information storage structures, into a physical address specifying the physical location of said information value storage location in said information storage device.
- 161. The information storage and retrieval system of claim 156, wherein each said first information value storage location stores a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
- 162. An information storage and retrieval system for reading information values recorded in an information storage device constructed from multiple layers of optical storage media, said information storage and retrieval system comprising:
light beam producing means for producing a light beam including
a first spectral component having a prespecified wavelength λi and a first characteristic polarization state P1, and/or a second spectral component having said prespecified wavelength λi and a second characteristic polarization state P2 orthogonal to said first characteristic polarization state P1; spectral component selection means for selecting the production of either said first spectral component and/or second spectral component during each information reading operation; supporting means for supporting, during each said information reading operation, an information storage device constructed from a plurality of information storage layers of optical storage media indexable as i=1,2,3, . . . , N, and collectively being stacked together to form a composite structure, wherein each said i-th information storage layer includes a first information storage structure disposed adjacent a second information storage structure,
said first information storage structure of each said i-th information storage layer having a first undulated surface and first plurality of first and second information value storage locations recorded therein, wherein each said first and second information value storage location recorded in said first undulated surface of said i-th information storage layer is characterized by a first characteristic wavelength band Δλa and said first characteristic polarization state P1. reflects spectral components that are incident thereto and have a wavelength within said first characteristic wavelength band Δλa and a polarization state equal to said first characteristic polarization state P1 and transmits spectral components that are incident thereto and have either a wavelength outside of said first characteristic wavelength band Δλa or a polarization state which is equal to said second characteristic polarization state P2, and said second information storage structure of each said i-th information storage layer having a second undulated surface and second plurality of first and second information value storage locations recorded therein, wherein each said first and second information value storage location recorded in said second undulated surface of said i-th information storage layer
is characterized by said characteristic polarization state P2 and a second characteristic wavelength band Δλb overlapping at least a portion of said first characteristic wavelength band Δλa about said prespecified wavelength λi, reflects spectral components that are incident thereto and have a wavelength within said second characteristic wavelength band Δλb and a polarization state equal to said second characteristic polarization state P2, and transmits spectral components that are incident thereto and have either a wavelength outside of said second characteristic wavelength band Δλb or a polarization state equal to said first characteristic polarization state P1; light focusing means for focusing said light beam while reading said first and second information value storage locations from said first and/or second information storage structures of said; light detecting means arranged for detecting spectral components incident to said i-th information storage layer, and detecting at a first signal level, spectral components reflected from each said first information value storage location in said i-th information storage layer, and detecting at a second signal level different than said second signal level, spectral components reflected from each said second information value storage location in said i-th information storage layer; spectral component analyzing means for analyzing the detected signal level of the spectral components detected by said light detection means, determining the information values recorded in said i-th information storage layer and producing a first data stream representative thereof, and determining the information values recorded in said i-th information storage layer and producing a second data stream representative thereof; and information access control means for controlling the operation of said light beam producing means during each said information reading operation.
- 163. The information storage and retrieval system of claim 162, which is further comprises
moving means for moving said information storage device relative to said focused laser beam so that,
during the reading of information from said i-th information storage layer, the first spectral component of said laser beam is reflected from one or more of said first plurality of first and second information value storage locations recorded in said i-th information storage layer, and during the reading of information from said i-th information storage layer, the second spectral component of said focused laser beam is reflected from one or more of said first plurality of said information value storage locations recorded in said i-th information storage layer.
- 164. The information storage and retrieval system of claim 163, wherein said light beam is a laser beam.
- 165. The information storage and retrieval system of claim 163, which further comprises:
interface means for interfacing said information storage and retrieval system with a host computer system.
- 166. The information storage and retrieval system of claim 163, which further comprises
address translation means for translating a logical address assigned to each said information value storage location in said first and second information storage structures, into a physical address specifying the physical location of said information value storage location in said information storage device.
- 167. The information storage and retrieval system of claim 163, wherein each said first information value storage location store a logical ‘1’ and each said second information value storage location stores a logical ‘0’.
RELATED CASES
[0001] This Application is a Continuation of copending application Ser. No. 09/141,063 filed on Aug. 27, 1998, now U.S. Pat. No. 6,498,775, which is a Continuation of application Ser. No. 08/539,279, now U.S. Pat. No. 5,838,653 entitled “Multiple Layer Optical Recording Media And Method And System For Recording And Reproducing Information Using The Same”, by the inventors Bunsen Fan and Sadeg M. Faris, filed Oct. 4, 1995.
Continuations (2)
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Number |
Date |
Country |
Parent |
09141063 |
Aug 1998 |
US |
Child |
10323719 |
Dec 2002 |
US |
Parent |
08539279 |
Oct 1995 |
US |
Child |
09141063 |
Aug 1998 |
US |