Claims
- 1. An athermal delay line comprising:
a first optical path; and a second optical path,
wherein the difference in optical path length between the first optical path and the second optical path is thermally insensitive.
- 2. The delay line of claim 1 wherein an overlapping portion of the first optical path and the second optical path comprises a polarizing beam splitter.
- 3. The delay line of claim 2 wherein the overlapping portion of the first optical path and the second optical path further comprises a fold mirror.
- 4. The delay line of claim 3 wherein the fold mirror is selected from the group consisting of angled glass facets, a beamsplitter cube with a reflective coating on its hypotenuse, and a free space mirror.
- 5. The delay line of claim 1 wherein a portion of the first optical path that does not overlap with the second optical path comprises a reflecting quarterwave plate.
- 6. The delay line of claim 5 wherein the reflecting quarterwave plate comprises a quarterwave plate in non-adjacent proximity to a reflector.
- 7. The delay line of claim 5 wherein the reflecting quarterwave plate comprises a quarterwave plate having a reflective coating.
- 8. The delay line of claim 5 wherein a portion of the second optical path that does not overlap with the first optical path comprises a reflecting quarterwave plate.
- 9. The delay line of claim 8 wherein the reflecting quarterwave plate comprises a quarterwave plate in non-adjacent proximity to a reflector.
- 10. The delay line of claim 8 wherein the reflecting quarterwave plate comprises a quarterwave plate having a reflective coating.
- 11. The delay line of claim 1 wherein an overlapping portion of the first optical path and the second optical path further comprises a transmissive quarterwave plate placed at the entrance, exit, or both, of the overlapping portion.
- 12. The delay line of claim 1 wherein a portion of the second optical path that does not overlap with the first optical path comprises an air gap.
- 13. An apparatus for delaying a light signal, comprising:
a polarizing beamsplitter; a first reflecting quarterwave plate in optical communication with the polarizing beamsplitter, forming a first optical path; and a second reflecting quarterwave plate in optical communication with the polarizing beamsplitter, forming a second optical path,
wherein the difference in optical path length between the first optical path and the second optical path is thermally insensitive.
- 14. The apparatus of claim 13 wherein an overlapping portion of the first optical path and the second optical path further comprises a fold mirror.
- 15. The apparatus of claim 14 wherein the fold mirror is selected from the group consisting of angled glass facets, a beamsplitter cube with a reflective coating on its hypotenuse, and a free space mirror.
- 16. The apparatus of claim 13 wherein at least one of the reflecting quarterwave plates comprises a quarterwave plate in non-adjacent proximity to a reflector.
- 17. The apparatus of claim 14 wherein at least one of the reflecting quarterwave plates comprises a quarterwave plate having a reflective coating.
- 18. The apparatus of claim 14 wherein an overlapping portion of the first optical path and the second optical path further comprises a transmissive quarterwave plate placed at the entrance, exit, or both, of the overlapping portion.
- 19. The apparatus of claim 14 wherein a portion of the second optical path that does not overlap with the first optical path comprises an air gap.
- 20. A PMD compensation stage comprising:
a polarization controller; and an athermal delay line in optical communication with the polarization controller, the delay line comprising:
a first optical path; and a second optical path, wherein the difference in optical path length between the first optical path and the second optical path is thermally insensitive.
- 21. A multichannel PMD compensation stage comprising:
a multichannel polarization controller; and a multichannel athermal delay line in optical communication with the polarization controller, the delay line comprising:
a first optical path; and a second optical path, wherein the difference in optical path length between the first optical path and the second optical path is thermally insensitive.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims the benefit of co-pending U.S. provisional application No. 60/364,958, filed on Mar. 15, 2002 and assigned to Terapulse, Inc., the entire disclosure of which is incorporated by reference as if set forth in its entirety herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60364958 |
Mar 2002 |
US |