Claims
- 1. A waveplate comprising a mesogen-containing polymer film having a backbone and having sidechains containing mesogen groups, wherein the mesogen-containing polymer film has a length, a width, and a thickness such that said mesogen-containing polymer film is insertable into a channel in an optical pathway of the planar lightwave circuit.
- 2. A waveplate according to claim 1 wherein said mesogen-containing polymer film has a birefringence sufficiently high to rotate or convert a polarization state of an optical signal traversing the optical pathway.
- 3. A waveplate according to claim 2 wherein the birefringence is at least 0.52.
- 4. A waveplate according to claim 2 wherein the waveplate is a half waveplate of thickness between 5 and 25 μm.
- 5. A waveplate according to claim 2 wherein the waveplate is a quarter waveplate of thickness between 5 and 25 μm.
- 6. A waveplate according to claim 1 wherein the mesogen-containing polymer film is formed of a polymer having a glass transition temperature between 100 C. and 300 C.
- 7. A waveplate according to claim 1 wherein the backbone contains monomers having at least two groups that provide rotational freedom within the backbone.
- 8. A waveplate according to claim 1 wherein the waveplate has a warpage of less than 350 μm.
- 9. A waveplate according to claim 1 wherein the backbone comprises a polymer selected from the group consisting of: polyimides, polyetherimides, polyesterimides, polyamideimides, polyketones, polyarylethers, polyetherketones, polysulfones, polysulfides, polyarylenes, polyesters, polyamides, polycarbonates, polyolefins, polyvinylesters, polyurethanes, polyacrylates, polyphenylenes.
- 10. A waveplate according to claim 9 wherein the backbone comprises polyetherimide polymer.
- 11. A waveplate according to claim 9 wherein the backbone comprises polyamide polymer.
- 12. A waveplate according to claim 10 wherein the backbone is formed of one or more components selected from the group consisting of 4,4′-bis(4,4′-isopropylidene diphenoxy)-bis(phthalic anhydride); 4,4′-(hexafluoroisopropylidene) diphthalic anhydride; 2,2′-bis(trifluoromethyl)benzidine; and bis{6-[4-biphenyloxy]hexyl}4,4′diamino-2-2′-biphenyldicarboxylate.
- 13. A waveplate according to claim 11 wherein the backbone is formed of one or more components selected from the group consisting of isophthalic chloride; 2,2′-bis(trifluoromethyl)benzidine; bis{6-[4-biphenyloxy]hexyl}4,4′diamino-2-2′-biphenyldicarboxylate; and 4,4′-bis(4,4′-isopropylidene diphenoxy)-bis(phthalic anhydride).
- 14. A waveplate according to claim 13 wherein the backbone is formed of isophthalic chloride; 2,2′-bis(trifluoromethyl)benzidine; and bis{6-[4-biphenyloxy]hexyl}4,4′diamino-2-2′-biphenyldicarboxylate.
- 15. A waveplate according to claim 13 wherein the backbone is formed of 2,2′-bis(trifluoromethyl)benzidine; bis{6-[4-biphenyloxy]hexyl}4,4′diamino-2-2′-biphenyldicarboxylate; and 4,4′-bis(4,4′-isopropylidene diphenoxy)-bis(phthalic anhydride).
- 16. A waveplate according to claim 1 wherein the mesogen groups have the form phenyl-X-phenyl-R or phenyl-phenyl-R, where X is selected from the group consisting of azo, diazo, azoxy, nitrone, carbon-carbon double bond, carbon-carbon triple bond, amide, imide, Schiff base, and ester; and R is selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 17. A waveplate according to claim 1 wherein the mesogen groups are selected from the group consisting of trans 1,3 cyclohexane; trans 1,4 cyclohexane; trans 2,5 disubstituted 1,3 dioxane; trans 2,5 disubstituted 1,3 dithiane, and trans 2,5 disubstituted 1,3 dioxathiane.
- 18. A waveplate according to claim 9 wherein the mesogen groups have the form phenyl-X-phenyl-R or phenyl-phenyl-R, where X is selected from the group consisting of azo, diazo, azoxy, nitrone, carbon-carbon double bond, carbon-carbon triple bond, amide, imide, Schiff base, and ester; and R is selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 19. A waveplate according to claim 9 wherein the mesogen groups are selected from the group consisting of trans 1,3 cyclohexane; trans 1,4 cyclohexane; trans 2,5 disubstituted 1,3 dioxane; trans 2,5 disubstituted 1,3 dithiane; and trans 2,5 disubstituted 1,3 dioxathiane.
- 20. A waveplate according to claim 1 wherein the mesogen group is biphenyl.
- 21. A waveplate according to claim 9 wherein the mesogen group is biphenyl.
- 22. A waveplate according to claim 10 wherein the mesogen group is biphenyl.
- 23. A waveplate according to claim 11 wherein the mesogen group is biphenyl.
- 24. A waveplate according to claim 1 wherein the mesogen groups comprise at least two aromatic groups and wherein the mesogen groups associate to help maintain birefringence as the film is drawn.
- 25. A waveplate according to claim 1 wherein the side chains comprise linking groups linking the mesogen groups to the backbone, wherein the linking groups are selected from the group consisting of: ether, ester, amide, imide, urethane, alkylene, alkyl.
- 26. A waveplate according to claim 9 wherein the side chains comprise linking groups linking the mesogen groups to the backbone, wherein the linking groups are selected from the group consisting of ether, ester, amide, imide, urethane, alkylene, alkyl.
- 27. A waveplate according to claim 16 wherein the side chains comprise linking groups linking the mesogen groups to the backbone, wherein the linking groups are selected from the group consisting of ether, ester, amide, imide, urethane, alkylene, alkyl.
- 28. A waveplate according to claim 17 wherein the side chains comprise linking groups linking the mesogen groups to the backbone, wherein the linking groups are selected from the group consisting of ether, ester, amide, imide, urethane, alkylene, alkyl.
- 29. A waveplate according to claim 1 wherein the side chains further comprise spacing groups linking the mesogen groups to the linking groups, the spacing groups being selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 30. A waveplate according to claim 9 wherein the side chains further comprise spacing groups linking the mesogen groups to the linking groups, the spacing groups being selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 31. A waveplate according to claim 16 wherein the side chains further comprise spacing groups linking the mesogen groups to the linking groups, the spacing groups being selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 32. A waveplate according to claim 17 wherein the side chains further comprise spacing groups linking the mesogen groups to the linking groups, the spacing groups being selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 33. A waveplate according to claim 20 wherein the side chains further comprise spacing groups linking the mesogen groups to the linking groups, the spacing groups being selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 34. A waveplate according to claim 22 wherein the side chains further comprise spacing groups linking the mesogen groups to the linking groups, the spacing groups being selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 35. A waveplate according to claim 23 wherein the side chains further comprise spacing groups linking the mesogen groups to the linking groups, the spacing groups being selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 36. A waveplate according to claim 24 wherein the side chains further comprise spacing groups linking the mesogen groups to the linking groups, the spacing groups being selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 37. A waveplate according to claim 28 wherein the side chains further comprise spacing groups linking the mesogen groups to the linking groups, the spacing groups being selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 38. A waveplate according to claim 1 wherein the spacing groups are sufficiently long and sufficiently flexible to allow the mesogens of adjacent sidechains to associate as a film of the mesogen-containing polymer is stretched.
- 39. A planar lightwave circuit comprising a waveguide and a waveplate according to any of claims 1, 2, 3, 7, 8, 10, 11, 12, 13, 18, 20, 24, 26, and 29 positioned in an optical pathway of the waveguide.
- 40. A planar lightwave circuit according to claim 39 wherein the waveguide is one of a plurality of waveguides of an arrayed waveguide grating positioned between two free propagation regions of the planar lightwave circuit, and wherein the waveplate is positioned in an optical pathway of each of the plurality of waveguides of the arrayed waveguide grating.
- 41. A planar lightwave circuit according to claim 39 wherein the waveplate is positioned at an angle to the waveguides that reduces back reflection caused by the waveplate groove, glue, and waveplate.
- 42. A method of making an optical device comprising
(a) providing a mesogen-containing polymer film; and (b) forming the mesogen-containing polymer piece to have a length, a width, and a thickness adapted for use in a planar lightwave circuit, the mesogen-containing polymer piece having a birefringence not equal to zero, said birefringence being suitable for use in a waveguide of a planar lightwave circuit
- 43. A method according to claim 42 and further comprising inserting the polymer piece into an optical pathway of a waveguide of the planar lightwave circuit.
- 44. A method according to claim 42 wherein the mesogen-containing polymer film has a polymer backbone selected from the group consisting of polyimides, polyetherimides, polyesterimides, polyamideimides, polyketones, polyarylethers, polyetherketones, polysulfones, polysulfides, polyarylenes, polyesters, polyamides, polycarbonates, polyolefins, polyvinylesters, polyurethanes, polyacrylates, polyphenylenes.
- 45. A method according to claim 42 wherein the mesogen-containing polymer film contains at least one mesogen having the form phenyl-X-phenyl-R or phenyl-phenyl-R, where X is selected from the group consisting of azo, diazo, azoxy, nitrone, carbon-carbon double bond, carbon-carbon triple bond, amide, imide, Schiff base, and ester; and R is selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 46. A method according to claim 42 wherein the mesogen groups are selected from the group consisting of trans 1,3 cyclohexane; trans 1,4 cyclohexane; trans 2,5 disubstituted 1,3 dioxane; trans 2,5 disubstituted 1,3 dithiane; and trans 2,5 disubstituted 1,3 dioxathiane.
- 47. A method according to claim 44 wherein the mesogen-containing polymer film contains at least one mesogen having the form phenyl-X-phenyl-R or phenyl-phenyl-R, where X is selected from the group consisting of azo, diazo, azoxy, nitrone, carbon-carbon double bond, carbon-carbon triple bond, amide, imide, Schiff base, and ester; and R is selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 48. A method according to claim 44 wherein the mesogen groups are selected from the group consisting of trans 1,3 cyclohexane; trans 1,4 cyclohexane; trans 2,5 disubstituted 1,3 dioxane; trans 2,5 disubstituted 1,3 dithiane; and trans 2,5 disubstituted 1,3 dioxathiane.
- 49. A method according to claim 42 wherein the mesogen-containing polymer film has at least one linking group selected from the group consisting of ether, ester, amide, imide, urethane, alkylene, alkyl.
- 50. A method according to claim 44 wherein the mesogen-containing polymer film has at least one linking group selected from the group consisting of ether, ester, amide, imide, urethane, alkylene, alkyl.
- 51. A method according to claim 45 wherein the mesogen-containing polymer film has at least one linking group selected from the group consisting of ether, ester, amide, imide, urethane, alkylene, alkyl.
- 52. A method according to claim 46 wherein the mesogen-containing polymer film has at least one linking group selected from the group consisting of ether, ester, amide, imide, urethane, alkylene, alkyl.
- 53. A method according to claim 47 wherein the mesogen-containing polymer film has at least one linking group selected from the group consisting of ether, ester, amide, imide, urethane, alkylene, alkyl.
- 54. A method according to claim 48 wherein the mesogen-containing polymer film has at least one linking group selected from the group consisting of ether, ester, amide, imide, urethane, alkylene, alkyl.
- 55. A method according to claim 42 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 56. A method according to claim 44 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 57. A method according to claim 45 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 58. A method according to claim 46 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 59. A method according to claim 47 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 60. A method according to claim 48 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 61. A method according to claim 49 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 62. A method according to claim 50 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 63. A method according to claim 51 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 64. A method according to claim 52 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 65. A method according to claim 53 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 66. A method according to claim 54 wherein the mesogen-containing polymer film has at least one spacer group selected from the group consisting of poly(alkylene oxide), polyalkane, polyperfluoroalkane, polysiloxane, and aliphatic polyether.
- 67. A method of using a mesogen-containing polymer, said method comprising processing the mesogen-containing polymer into a film with birefringence in the plane of the film, inserting the mesogen-containing polymer film into an optical pathway of a waveguide of a planar lightwave circuit such that the polymer effects a change in an optical signal transmitted through the waveguide and the polymer.
- 68. A method of using a mesogen-containing polymer comprising passing an optical signal having a first polarization state through a waveguide and the polymer such that the optical signal has a second polarization state not identical to the first polarization state.
Parent Case Info
[0001] This application claims benefit of U.S. Provisional Application Serial No. 60/329,979, filed Oct. 16, 2001, the contents of which is hereby incorporated by reference into the present application for all purposes as if fully put forth herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60329979 |
Oct 2001 |
US |