Claims
- 1. A system for producing an edge-lit hologram, comprising:
an object beam head operable to direct an object beam; a reference beam head operable to direct an edge-lit reference beam to interfere with the object beam; and a frame operable to position and translate a holographic recording material such that multiple portions of the holographic recording material are successively exposed to interference of the object beam and the edge-lit reference beam to record the edge-lit hologram on the holographic recording material.
- 2. The system of claim 1, wherein the reference beam head comprises:
an assembly base; and a prism coupled to the assembly base, the prism operable to receive a reference beam and condition the reference beam into an edge-lit reference beam.
- 3. The system of claim 2, wherein the reference beam head further comprises a lens coupled to the assembly base in a path of the reference beam such that the reference beam travels through the lens to the prism.
- 4. The system of claim 3, wherein the lens comprises an anamorphic collimating lens for conditioning the reference beam sufficient to create a horizontal parallax only edge-lit hologram.
- 5. The system of claim 3, wherein the lens comprises a collimating lens for conditioning the reference beam sufficient to create a full parallax edge-lit hologram.
- 6. The system of claim 2, wherein the reference beam head further comprises an optical fiber coupled to the assembly base, the optical fiber having a tip oriented to deliver the reference beam to the prism.
- 7. The system of claim 2, wherein the reference beam comprises a red beam, a green beam and a blue beam.
- 8. The system of claim 7, wherein the reference beam head further comprises three lenses coupled to the assembly base, each positioned in a path of one beam, such that each beam travels through one of the three lenses to the prism.
- 9. The system of claim 8, wherein the three lenses comprise anamorphic collimating lenses for conditioning the red, green and blue beams sufficient to create a full-color horizontal parallax only hologram.
- 10. The system of claim 8, wherein the three lenses comprise spherical collimating lenses for conditioning the red, green and blue beams sufficient to create a full-color full parallax hologram.
- 11. The system of claim 7, wherein the reference beam head comprises:
a first optical fiber coupled to the assembly base, the first optical fiber having a tip oriented to deliver the red beam to the prism; a second optical fiber coupled to the assembly base, the second optical fiber having a tip oriented to deliver the green beam to the prism; and a third optical fiber coupled to the assembly base, the third optical fiber having a tip oriented to deliver the blue beam to the prism.
- 12. The system of claim 7, wherein the reference beam head further comprises a dichroic combiner coupled to the assembly base, the dichroic combiner positioned to receive two of the three beams from the collimating lenses and operable to provide a combined beam to the prism.
- 13. The system of claim 12, wherein the dichroic combiner is positioned to receive the red beam and the blue beam.
- 14. The system of claim 2, wherein the prism comprises a dove prism.
- 15. The system of claim 2, wherein the reference beam head further comprises a reservoir coupled to the assembly base proximate the prism, the reservoir operable to hold an index matching fluid and allowing a layer of the index matching fluid to form between the prism and a holographic recording material.
- 16. The system of claim 15, further comprising:
a fluid pump; and a fluid tube extending between the fluid pump and the reference beam head; the fluid pump operable to provide index matching fluid to the reservoir through the fluid tube.
- 17. The system of claim 2, wherein the reference beam head further comprises a masking plate coupled to the prism in a path of the edge-lit reference beam.
- 18. The system of claim 1, further comprising a transparent plateholder coupled to the frame, the transparent plateholder positioned between the object beam head and the reference beam head.
- 19. The system of claim 18, wherein the plateholder is operable to receive a holographic recording material on a side proximate the object beam head.
- 20. The system of claim 18, wherein the plateholder is operable to receive a holographic recording material on a side proximate the reference beam head.
- 21. The system of claim 1, further comprising a computer operable to control translation of the holographic recording material.
- 22. The system of claim 21, further comprising the computer operable to control translation of the frame along a first axis and a second axis, where the first axis is substantially perpendicular to the second axis.
- 23. A system for producing an edge-lit hologram, comprising:
a frame operable to position a holographic recording material; an object beam head coupled to a first support, the object beam head operable to direct an object beam; a reference beam head coupled to a second support, the reference beam head operable to direct an edge-lit reference beam to interfere with the object beam; and the first support and the second support operable to translate the object beam head and the reference beam head generally in unison with each other and relative to the holographic recording material such that portions of the holographic recording material are successively exposed to interference of the object beam and the edge-lit reference beam to record the edge-lit hologram on the holographic recording material.
- 24. The system of claim 23, wherein the reference beam head further comprises at least one lens disposed in a path of a reference beam such that the reference beam travels through the lens to a prism which conditions the reference beam into an edge-lit reference beam.
- 25. The system of claim 24, wherein the lens comprises an anamorphic collimating lens for conditioning the reference beam sufficient to create a horizontal parallax only edge-lit hologram.
- 26. The system of claim 24, wherein the lens comprises a collimating lens for conditioning the reference beam sufficient to create a full parallax edge-lit hologram.
- 27. The system of claim 23, wherein the edge-lit reference beam further comprises a red beam, a green beam and a blue beam.
- 28. The system of claim 27, wherein the reference beam head further comprises at least three lenses, each positioned in a path of one of the beams, such that each beam travels through one of the three lenses to a prism.
- 29. The system of claim 23, wherein the reference beam head comprises:
a first optical fiber coupled to an assembly base, the first optical fiber having a tip oriented to deliver a red beam to a prism; a second optical fiber coupled to the assembly base, the second optical fiber having a tip oriented to deliver a green beam to the prism; a third optical fiber coupled to the assembly base, the third optical fiber having a tip oriented to deliver a blue beam to the prism; and the prism operable to condition the red beam, green beam and blue beam into respective edge-lit reference beams.
- 30. The system of claim 29, wherein the reference beam head further comprises a dichroic combiner coupled to the assembly base, the dichroic combiner positioned to receive two of the three beams from respective collimating lenses and operable to provide a combined beam to the prism.
- 31. The system of claim 29, wherein the prism comprises a dove prism.
- 32. The system of claim 23, wherein the reference beam head further comprises a masking plate coupled to a prism in a path of the edge-lit reference beam.
- 33. The system of claim 23, further comprising a transparent plateholder positioned between the object beam head and the reference beam head.
- 34. The system of claim 33, wherein the plateholder is operable to receive a holographic recording material on a side proximate the object beam head.
- 35. The system of claim 33, wherein the plateholder is operable to receive a holographic recording material on a side proximate the reference beam head.
- 36. The system of claim 23, further comprising a computer operable to control translation of the object beam head and the reference beam head.
- 37. A reference beam head for use in producing edge-lit holograms, comprising:
an assembly base; a prism coupled to the assembly base operable to receive a reference beam and condition the reference beam into an edge-lit reference beam; a reservoir coupled to the assembly base proximate the prism; and the reservoir operable to hold an index matching fluid and to allow a layer of the index matching fluid to form between the prism and a holographic recording material.
- 38. The reference beam head of claim 37, further comprising a masking plate coupled to the prism in a path of the edge-lit reference beam.
- 39. The reference beam head of claim 37, further comprising a lens coupled to the assembly base in a path of the reference beam such that the reference beam travels through the lens to the prism.
- 40. The reference beam head of claim 39, wherein the lens comprises an anamorphic collimating lens for conditioning the reference beam sufficient to create a horizontal parallax only edge-lit hologram.
- 41. The reference beam head of claim 39, wherein the lens comprises a collimating lens for conditioning the reference beam sufficient to create a full parallax edge-lit hologram.
- 42. The reference beam head of claim 38, wherein the reference beam head further comprises an optical fiber coupled to the assembly base, the optical fiber having a tip oriented to deliver the reference beam to the prism.
- 43. The reference beam head of claim 38, wherein the reference beam comprises a red beam, a green beam and a blue beam.
- 44. The reference beam head of claim 43, wherein the reference beam head further comprises three lenses coupled to the assembly base, one lens positioned in a path of each beam, such that each beam travels through one of the three lenses to the prism.
- 45. The reference beam head of claim 44, wherein the three lenses comprise anamorphic collimating lenses for conditioning the red, green and blue beams sufficient to create a full-color horizontal parallax only hologram.
- 46. The reference beam head of claim 44, wherein the three lenses comprise collimating lenses for conditioning the red, green and blue beams sufficient to create a full-color full parallax hologram.
- 47. The reference beam head of claim 43, further comprising:
a first optical fiber coupled to the assembly base, the first optical fiber having a tip for oriented to deliver the red beam to the prism; a second optical fiber coupled to the assembly base, the second optical fiber having a tip oriented to deliver the green beam to the prism; and a third optical fiber coupled to the assembly base, the third optical fiber having a tip oriented to deliver the blue beam to the prism.
- 48. The reference beam head of claim 43, wherein the reference beam head further comprises a dichroic combiner coupled to the assembly base, the dichroic combiner positioned to receive two of the three beams from the collimating lenses and operable to provide a combined beam to the prism.
- 49. The reference beam head of claim 48, wherein the dichroic combiner is positioned to receive the red beam and the blue beam.
- 50. The reference beam head of claim 48, wherein the prism comprises a dove prism.
- 51. A method for producing an edge-lit hologram, comprising:
directing an object beam at holographic recording material; directing an edge-lit reference beam at the holographic recording material to interfere with the object beam; and translating the holographic recording material and the object beam and edge-lit reference beam with respect to one another to successively expose multiple portions of the holographic recording material to the interference of the object beam and the edge-lit reference beam to record the edge-lit hologram on the holographic recording material.
- 52. The method of claim 51, wherein translating further comprises changing a position of the holographic recording material while the object beam and the edge-lit reference beam remain in generally fixed positions.
- 53. The method of claim 51, wherein translating further comprises changing positions of the object beam and the edge-lit reference beam while the holographic recording material remains in a generally fixed position.
- 54. The method of claim 51, wherein translating further comprises:
moving the holographic recording material relative to the object beam and the edge-lit reference beam; and moving the object beam and the edge-lit reference beam substantially in unison with each other relative to the holographic recording material.
- 55. The method of claim 51, wherein directing an edge-lit reference beam comprises using a prism to receive a reference beam and to condition the reference beam into an edge-lit reference beam.
- 56. The method of claim 55, further comprising anamorphically collimating the reference beam before the reference beam strikes the prism to assist in creating a horizontal parallax only edge-lit hologram.
- 57. The method of claim 55, further comprising collimating a reference beam before the reference beam strikes the prism to assist in creating a full parallax edge-lit hologram.
- 58. The method of claim 55, further comprising forming a layer of index matching fluid between the prism and the holographic recording material.
- 59. The method of claim 51, further comprising the edge-lit hologram having a size substantially larger than the size of associated production optics used to form the object beam and edge-lit reference beam.
- 60. A reference beam head for use in producing an edge-lit hologram, comprising
a base; a prism coupled to the base for receiving multiple reference beams and conditioning the reference beams to form respective edge-lit reference beams; and the prism having a first end for receiving a green reference beam and a second end opposite from the first end for receiving a red reference beam and a blue reference beam.
- 61. A system for producing an edge-lit hologram comprising;
a holographic recording material disposed on and attached to a supporting substrate; a prism for receiving at least one reference beam and conditioning the reference beam to provide an edge-lit reference beam; the supporting substrate and the holographic recording material having at least one common edge with the prism disposed thereon; and a layer of index matching fluid formed between the prism and the associated edge of the supporting substrate and the holographic recording material.
- 62. A prism for use in producing an edge-lit hologram, comprising:
the prism having multiple surfaces defined in part by a top surface, a bottom surface, a first side surface, a second side surface, a first end surface and a second end surface which are joined with each other; the top surface and the bottom surface aligned generally parallel with each other; the first side surface and the second side surface disposed generally parallel with each other and extending between the top surface and the bottom surface; the first side surface and the second side surface having approximately the same size and the same configuration; the first end surface extending at an angle from a first end of the bottom surface to a first end of the top surface; and the second end surface extending at an angle from a second end of the bottom surface to a second end of the top surface.
- 63. A system for displaying an edge-lit hologram comprising:
a plinth formed from material which allows transmission of light therethrough; the plinth having a first surface and a second surface disposed generally parallel with each other; the plinth having a first edge and a second edge disposed generally parallel with each other and extending between the first surface and the second surface; an image hologram mounted on the first surface; a first holographic optical element attached to and extending along the first edge; a first source of illuminating light disposed on the second edge; and the holographic optical element formed to collimate and reflect light from the illuminating source to strike the image hologram disposed on the first surface at appropriate angles to make the image hologram visible from the second surface of the plinth.
- 64. The display system of claim 62 further comprising;
a second illuminating source of light disposed on the first edge of the plinth; a second holographic optical element disposed on the second edge of the plinth; the first holographic optical element formed from material which will collimate and reflect light from the first illuminating source and will be substantially transparent with respect to light from the second illuminating source; and the second holographic optical element formed from material which will generally collimate and reflect light from the second illuminating source and will be substantially transparent with respect to light from the first illuminating source.
- 65. The display system of claim 62 further comprising:
a second illuminating source of light disposed on the first edge of the plinth; a second holographic optical element disposed on the second edge of the plinth; a third illuminating source of light disposed on the first edge of the plinth adjacent to the second illuminating source of light; the first holographic element formed from material which will collimate and reflect light from the first illuminating source and will be substantially transparent with respect to light from the second illuminating source and the third illuminating source; and the second holographic element formed from material which will generally collimate and reflect light from the second illuminating source and the third illuminating source and will be substantially transparent with respect to light from the first illuminating source.
- 66. The display system of claim 64 further comprising:
the first illumination source providing green light; the second illumination source providing red light; and the third illumination source providing blue light.
- 67. The display system of claim 62 further comprising at least two holographic optical elements and two sources of illuminating light for use in displaying a two color edge-lit reflection hologram.
- 68. The display system of claim 62 further comprising at least two holographic optical elements and at least three sources of illuminating light for use in displaying a full color edge-lit reflection hologram.
RELATED APPLICATION
[0001] This application claims the benefit of previously filed provisional application Serial No. 60/120,433 filed Feb. 16, 1999 entitled System and Method for Producing and Displaying a One-Step, Edge-Lit Hologram.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60120433 |
Feb 1999 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09504730 |
Feb 2000 |
US |
Child |
09746609 |
Dec 2000 |
US |