Claims
- 1. A polarization independent tunable optical filter system comprising:
a filter of the type which reflects a pass signal and transmits a drop signal according to frequency, tunable by rotation with respect to the input beam; and a retro reflector assembly situated and aligned to intercept light reflected from the filter, the retro reflector assembly including:
a quarter wave plate, and a retro reflector element, wherein the pass signal reflected off the filter a first time passes through the quarter wave plate a first time, reflects off of the retro reflector, passes through the quarter wave plate a second time, and reflects off of the filter a second time.
- 2. The apparatus of claim 1 wherein the filter is an interference filter.
- 3. The apparatus of claim 1, further including a null state/all-pass element wherein:
the filter further comprises a mirror portion adjacent to a filtering portion and; wherein the lens comprises a cylindrical lens whose axis is parallel to the the direction from the mirror portion to the filtering portion; and further comprising a beam displacer for selectively redirecting the input beam toward the mirror portion or the filtering portion.
- 3. The filter system of claim 1, wherein the retro reflector element comprises:
a lens located one focal length from the filter; and a mirror located one focal length from the lens.
- 4. The filter system of claim 1, wherein the retro reflector element comprises an array of retro reflector elements.
- 5. The filter system of claim 1, wherein the retro reflector element comprises:
a first mirror affixed adjacent to the filter, wherein the fixed angle formed by the plane of the filter and the plane of the first mirror is under 180°, the mirror and the filter forming a reflector assembly; means for directing the input beam such that the portion of the input beam that reflects off of the interference filter reflects off of the mirror; and means for rotating the reflector assembly about an axis at the vertex of the the plane of the filter and the plane of the mirror; and a second mirror aligned to intercept the reflected light from the first mirror; wherein the quarter wave plate is located between the first mirror and the second mirror.
- 6. The apparatus of claim 5, wherein the angle formed by the plane of the filter and the plane of the first mirror is approximately 45°.
- 7. The filter system of claim 1, further comprising:
a circulator between the input beam and the filter for providing the input beam to the filter, and for providing light reflected from the filter the second time as a pass signal.
- 8. The filter system of claim 7, further including a circulator between the filter and the drop signal for providing the input light transmitted through the filter as a drop signal and for providing an add signal to the filter for combination with the pass signal.
- 9. The filter system of claim 1, further including:
a connector between the input beam and the filter for providing the input beam along a first path to the filter, and for collecting light reflected from the filter the second time as a pass signal along a second path.
- 10. The filter system of claim 9, further including:
a connector between the filter and the drop signal for collecting light passed through the filter along a first path and for providing an add signal to the filter along a second path.
- 11. A polarization independent tunable optical filter system comprising:
filter means for reflecting a pass signal and transmitting a drop signal according to frequency; and retro-reflector means situated and aligned to intercept and reflect light reflected from the filter means, the retro-reflector means including:
means for rotating the polarization of light by 90°, and means for reflecting light back to the filter means, wherein the pass signal reflected off the filter means a first time reflects from the retro-reflector means, and reflects off of the filter means a second time.
- 12. The filter system of claim 11, further comprising:
means between the input beam and the filter for providing the input beam to the filter means, and for providing light reflected from the filter means the second time as a pass signal.
- 13. The filter system of claim 12, further including means between the filter and the drop signal for providing the input light transmitted through the filter as a drop signal and for providing an add signal to the filter for combination with the pass signal.
- 14. The filter system of claim 12, wherein the means for rotating comprises a quarter wave plate through which the light passes twice.
- 15. The apparatus of claim 12, further including a null state/all-pass switch for either reflecting all input light or for allowing input light to hit the filter means.
- 16. The method for filtering unpolarized light comprising the steps of:
reflecting a pass signal off of a filter and transmitting a drop signal through the filter according to frequency; rotating the reflected pass signal by 90°; reflecting the rotated signal off of the filter a second time; and providing the rotated and twice reflected signal as a pass output signal.
- 17. The method of claim 16, further including the step of providing an add signal to the filter for combination with the pass signal.
Parent Case Info
[0001] This application claims benefit of U.S. Provisional Patent Application No. 60/285,221, filed Apr. 20, 2001
Provisional Applications (1)
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Number |
Date |
Country |
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60285221 |
Apr 2001 |
US |