Claims
- 1. A liquid crystal cell assembly which exhibits a substantial reduction of interference in coherent light beams within a selected wavelength range, comprising:
a reflective liquid crystal cell comprised of:
a transparent flat, planar substrate having electrode materials on its inner surface, said transparent substrate being substantially transparent to the selected wavelength range, a reflective flat, planar substrate having electrode materials on its inner surface, said reflective substrate being substantially reflective to the selected wavelength range, wherein said reflective substrate and said transparent substrate have substantially uniform thickness, a joining adhesive for joining the two substrates to achieve a precisely controlled and parallel spacing between the two substrates, wherein the inner surfaces of the two substrates are facing each other, and a cavity formed by the joining of the two substrates, defined by the inner surfaces, and filled with liquid crystal material; a wedged spacer comprised of a transparent optical material having substantially the same refractive index as the transparent substrate over the selected wavelength range, said wedged spacer having a first planar face and a second planar face nonparallel to the first planar face, said transparent optical material being substantially transparent to the selected wavelength range; and a spacer optical adhesive joining the transparent substrate of the liquid crystal cell to the second planar face of the wedged spacer, said spacer optical adhesive being substantially transparent to the selected wavelength range.
- 2. The liquid crystal cell assembly of claim 1, wherein the refractive index of the spacer optical adhesive matches that of the transparent substrate, and that of the wedged spacer, within 0.01 over the selected wavelength range.
- 3. The liquid crystal cell assembly of claim 1, wherein the refractive index of the spacer optical adhesive matches that of the transparent substrate, and that of the wedged spacer, within 0.005 over the selected wavelength range.
- 4. The liquid crystal cell assembly of claim 1, wherein the second planar face of the wedged spacer forms a wedge angle with a plane parallel to the first planar face of the wedged spacer, said wedge angle being sufficient to separate a beam that reflects from an interface of the transparent substrate and the second planar face as well as planar interfaces parallel to said interface from a beam that reflects from the first planar face as well as planar interfaces parallel to the first planar face.
- 5. The liquid crystal cell assembly of claim 1, wherein the second planar face of the wedged spacer forms an angle between about ¼ and about 8 degrees with a plane parallel to the first planar face of the wedged spacer.
- 6. The liquid crystal cell assembly of claim 1, wherein the second planar face of the wedged spacer forms an angle of about ½ degrees with a plane parallel to the first planar face of the wedged spacer.
- 7. A retarder-compensated liquid crystal cell assembly which exhibits a substantial reduction of interference in coherent light beams within a selected wavelength range, comprising:
a reflective liquid crystal cell comprised of:
a transparent flat, planar substrate having electrode materials on its inner surface, said transparent substrate being substantially transparent to the selected wavelength range, a reflective flat, planar substrate having electrode materials on its inner surface, said reflective substrate being substantially reflective to the selected wavelength range, wherein said reflective substrate and said transparent substrate have substantially uniform thickness, a joining adhesive for joining the two substrates to achieve a precisely controlled and parallel spacing between the two substrates, wherein the inner surfaces of the two substrates are facing each other, and a cavity formed by the joining of the two substrates, defined by the inner surfaces, and filled with liquid crystal material; a wedged spacer comprised of a transparent optical material having substantially the same refractive index as the transparent substrate over the selected wavelength range, said wedged spacer having a first planar face and a second planar face non-parallel to the first planar face, said transparent optical material being substantially transparent to the selected wavelength range; a spacer optical adhesive joining the transparent substrate of the liquid crystal cell to the second planar face of the wedged spacer, said spacer optical adhesive being substantially transparent to the selected wavelength range; and an optical retarder having a retarder optical adhesive joining it to the first planar face of the wedged spacer, said retarder optical adhesive being substantially transparent to the selected wavelength range.
- 8. The liquid crystal cell assembly of claim 7, wherein the refractive index of the spacer optical adhesive matches that of the transparent substrate, and that of the wedged spacer, within 0.01 over the selected wavelength range.
- 9. The liquid crystal cell assembly of claim 7, wherein the refractive index of the spacer optical adhesive matches that of the transparent substrate, and that of the wedged spacer, within 0.005 over the selected wavelength range.
- 10. The liquid crystal cell assembly of claim 7, wherein the refractive index of the retarder optical adhesive matches that of the wedged spacer, and that of the optical retarder, within 0.01 over the selected wavelength range.
- 11. The liquid crystal cell assembly of claim 7, wherein the refractive index of the retarder optical adhesive matches that of the wedged spacer, and that of the optical retarder, within 0.005 over the selected wavelength range.
- 12. The liquid crystal cell assembly of claim 7, wherein the second planar face of the wedged spacer forms a wedge angle with a plane parallel to the first planar face of the wedged spacer, said wedge angle being sufficient to separate a beam that reflects from an interface of the transparent substrate and the second planar face as well as planar interfaces parallel to said interface from a beam that reflects from the first planar face as well as planar interfaces parallel to the first planar face.
- 13. The liquid crystal cell assembly of claim 7, wherein the second planar face of the wedged spacer forms an angle between about ¼ and about 8 degrees with a plane parallel to the first planar face of the wedged spacer.
- 14. The liquid crystal cell assembly of claim 7, wherein the second planar face of the wedged spacer forms an angle of about ½ degrees with a plane parallel to the first planar face of the wedged spacer.
- 15. A liquid crystal cell assembly which exhibits a substantial reduction of interference in coherent light beams within a selected wavelength range, comprising:
a transmissive liquid crystal cell comprised of:
a first transparent flat, planar substrate having electrode materials on its inner surface, a second transparent flat, planar substrate having electrode materials on its inner surface, wherein said first and second transparent substrates have substantially uniform thickness and are substantially transparent to the selected wavelength range, a joining adhesive for joining the two substrates to achieve a precisely controlled and parallel spacing between the two substrates, wherein the inner surfaces of the two substrates are facing each other, and a cavity formed by the joining of the two substrates, defined by the inner surfaces, and filled with liquid crystal material; a wedged reflector comprised of:
a first planar face, a second planar face, non-parallel to the first planar face, and a reflector optical adhesive joining the second transparent substrate of the liquid crystal cell to the second planar face of the wedged reflector, said reflector optical adhesive being substantially transparent to the selected wavelength range.
- 16. The liquid crystal cell assembly of claim 15, wherein the refractive index of the reflector optical adhesive matches that of the second transparent substrate, and that of the wedged reflector, within 0.01 over the selected wavelength range.
- 17. The liquid crystal cell assembly of claim 15, wherein the refractive index of the reflector optical adhesive matches that of the second transparent substrate, and that of the wedged reflector, within 0.005 over the selected wavelength range.
- 18. The liquid crystal cell assembly of claim 15, wherein the first planar face of the wedged reflector has been coated with a reflective coating.
- 19. The liquid crystal cell assembly of claim 15, further comprising:
a mirror joined to the first planar face of the wedged reflector.
- 20. The liquid crystal cell assembly of claim 15, further comprising:
a wedged spacer joined to the first transparent substrate of the liquid crystal cell by a spacer optical adhesive substantially transparent to the selected wavelength range, said wedged spacer having substantially the same refractive index as the transparent substrates over the selected wavelength range.
- 21. The liquid crystal cell assembly of 20, further comprising:
an optical retarder joined to the wedged spacer using a retarder adhesive that is substantially transparent to the selected wavelength range.
- 22. The liquid crystal cell assembly of claim 15, further comprising:
an optical retarder in optical series with the liquid crystal cell.
- 23. The liquid crystal cell assembly of claim 15, wherein the second planar face of the wedged reflector forms a wedge angle with a plane parallel to the first planar face of the wedged reflector, said wedge angle being sufficient to separate a beam that reflects from an interface of the transparent substrate and the second planar face as well as planar interfaces parallel to said interface from a beam that reflects from the first planar face as well as planar interfaces parallel to the first planar face.
- 24. The liquid crystal cell assembly of claim 15, wherein the second planar face of the wedged reflector forms an angle between about ¼ and about 8 degrees with a plane parallel to the first planar face of the wedged reflector.
- 25. The liquid crystal cell assembly of claim 15, wherein the second planar face of the wedged reflector forms an angle of about ½ degrees with a plane parallel to the first planar face of the wedged reflector.
- 26. A liquid crystal cell assembly comprising:
a liquid crystal cell having a transparent flat, planar substrate substantially transparent to a selected wavelength range; and a wedged spacer for substantially reducing interference of coherent light beams within the selected wavelength range as said coherent light beams pass through the liquid crystal cell assembly, said wedged spacer comprised of optical material having substantially the same refractive index as the transparent substrate over the selected wavelength range and being substantially transparent to the selected wavelength range, wherein the wedged spacer has two opposite and non-parallel planar faces, one of which is joined to the transparent substrate with a spacer optical adhesive substantially transparent to the selected wavelength range.
- 27. The liquid crystal cell assembly of claim 26, wherein the refractive index of the spacer optical adhesive matches that of the transparent substrate, and that of the wedged spacer, within 0.01 over the selected wavelength range.
- 28. The liquid crystal cell assembly of claim 26, wherein the refractive index of the spacer optical adhesive matches that of the transparent substrate, and that of the wedged spacer, within 0.005 over the selected wavelength range.
- 29. The liquid crystal cell assembly of claim 26, wherein the transparent substrate of the liquid crystal cell has electrode materials on its inner surface and the liquid crystal cell further comprises:
a reflective flat, planar substrate having electrode materials on its inner surface, said reflective substrate being substantially reflective to the selected wavelength range, wherein said reflective substrate and said transparent substrate have substantially uniform thickness; a joining adhesive for joining the two substrates to achieve a precisely controlled and parallel spacing between the two substrates, wherein the inner surfaces of the two substrates are facing each other; and a cavity formed by the joining of the two substrates, defined by the inner surfaces, and filled with liquid crystal material.
- 30. The liquid crystal cell assembly of claim 26, wherein the transparent substrate of the liquid crystal cell has electrode materials on its inner surface and the liquid crystal cell further comprises:
a corresponding transparent flat, planar substrate having electrode materials on its inner surface, wherein the transparent substrate and said corresponding transparent substrate have substantially uniform thickness and are substantially transparent to the selected wavelength range; a joining adhesive for joining the two substrates to achieve a precisely controlled and parallel spacing between the two substrates, wherein the inner surfaces of the two substrates are facing each other; and a cavity formed by the joining of the two substrates, defined by the inner surfaces, and filled with liquid crystal material.
- 31. A liquid crystal cell assembly comprising:
a liquid crystal cell having a transparent flat, planar substrate substantially transparent to a selected wavelength range; and a wedged reflector for substantially reducing interference of coherent light beams within the selected wavelength range as said coherent light beams pass through the liquid crystal cell assembly, wherein the wedged reflector has two opposite and non-parallel planar faces, one of which is joined to the transparent substrate with a reflector optical adhesive substantially transparent to the selected wavelength range.
- 32. The liquid crystal cell assembly of claim 31, wherein the refractive index of the reflector optical adhesive matches that of the transparent substrate, and that of the wedged reflector, within 0.01 over the selected wavelength range.
- 33. The liquid crystal cell assembly of claim 31, wherein the refractive index of the reflector optical adhesive matches that of the second transparent substrate, and that of the wedged reflector, within 0.005 over the selected wavelength range.
- 34. The liquid crystal cell assembly of claim 31, wherein the first planar face of the wedged reflector has been coated with a reflective coating.
- 35. The liquid crystal cell assembly of claim 31, further comprising:
a mirror joined to the first planar face of the wedged reflector.
- 36. The liquid crystal cell assembly of claim 31, wherein the transparent substrate of the liquid crystal cell has electrode materials on its inner surface and the liquid crystal cell further comprises:
a corresponding transparent flat, planar substrate having electrode materials on its inner surface, wherein the transparent substrate and said corresponding transparent substrate have substantially uniform thickness and are substantially transparent to the selected wavelength range; a joining adhesive for joining the two substrates to achieve a precisely controlled and parallel spacing between the two substrates, wherein the inner surfaces of the two substrates are facing each other; and a cavity formed by the joining of the two substrates, defined by the inner surfaces, and filled with liquid crystal material.
RELATED APPLICATIONS
[0001] This application claims priority from U.S. Provisional Patent Application Serial No. 60/199,456 which was filed on Apr. 25, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60199456 |
Apr 2000 |
US |