Claims
- 1. A chromatic dispersion compensator comprising:
a dispersive means for spatially separating an input optical signal into spatially spaced frequency components, and a plurality of separate phase shifters, each disposed for imparting a phase shift to a channel containing a range of the spatially spaced frequency components.
- 2. The dispersion compensator of claim 1 further comprising means for recombining the spatially spaced frequency components into a single output signal.
- 3. The dispersion compensator of claim 1 wherein the plurality of phase shifters is a MEMS mirror array.
- 4. The dispersion compensator of claim 1 wherein the phase shifters are lenses.
- 5. The dispersion compensator of claim 3 wherein the mirror array comprises deformable mirrors.
- 6. The dispersion compensator of claim 5 further comprising control means for adjusting the shape and position of the deformable mirrors.
- 7. The dispersion compensator of claim 3 wherein the mirror array comprises fixed mirrors.
- 8. The dispersion of claim 1 wherein the dispersive means is a diffraction grating.
- 9. The dispersion compensator of claim 8 wherein the diffraction grating is a transmissive diffraction grating.
- 10. The dispersion compensator of claim 8 wherein the diffraction grating is a reflective diffraction grating.
- 11. The dispersion compensator of claim 10 wherein the diffraction grating is a concave diffraction grating.
- 12. The dispersion compensator of claim 1 further comprising a collimating means disposed for directing the input optical signal to the dispersive means.
- 13. The dispersion compensator of claim 12 wherein the collimating means is a concave mirror.
- 14. The dispersion compensator of claim 12 wherein the collimating means is a lens.
- 15. The dispersion compensator of claim 13 wherein the mirror is a spherical mirror.
- 16. The dispersion compensator of claim 1 further comprising a focusing means for focusing the separated frequency components onto the separate phase shifters.
- 17. The compensator of claim 16 wherein the focusing means is a concave mirror.
- 18. The compensator of claim 16 wherein a single concave mirror is both the focusing means and the collimating means.
- 19. A chromatic dispersion compensator comprising:
a) an input port for inputting an input optical signal, b) a first dispersive means optically coupled for spatially separating the input optical signal into spatially spaced frequency components, c) at least one phase shifter optically coupled for imparting a phase shift to a range of the spatially spaced frequency components, d) a second dispersive means optically coupled for recombining the spatially spaced frequency components into a first output signal, e) a retroreflecting means coupled to redirect the first output signal back to the second dispersive means to undergo a second pass to the at least one phase shifter and a second pass to the first dispersive means to produce a second output signal, and f) an output port for outputting the second output signal, wherein an input signal is directed to the first dispersive means, the spaced frequency components are directed to the at least one phase shifter, the phase-shifted components are directed to the second dispersive means to produce a first output signal which is redirected by the retroreflecting means for a second pass to the s second dispersive means, the phase shifter, the first dispersive means and to the output port.
- 20. The chromatic dispersion compensator of claim 19 wherein the first and second dispersive means is a single dispersive means.
- 21. The dispersion compensator of claim 19 wherein the at least one phase shifter is a plurality of separate phase shifters.
- 22. The compensator of claim 21 wherein each separate phase shifter is for imparting a phase shift to a channel containing a range of the spatially spaced frequency components.
- 23. The compensator of claim 19 further comprising
g) a collimating element coupled for collimating the input signal onto the first dispersive means, and h) a focusing element coupled for focusing the spatially separated frequency components from the first dispersive means onto the at least one phase shifter.
- 24. The dispersion compensator of claim 23 wherein the collimating element is a spherical mirror.
- 25. The compensator of claim 23 wherein the focusing element is a spherical mirror.
- 26. The compensator of claim 23 wherein the collimating element and the focusing element is the same spherical mirror.
- 27. The compensator of claim 19 wherein the retroreflecting means is a prism.
Parent Case Info
[0001] This application claims priority benefit of U.S. provisional applications No. 60/296,444 filed Jun. 8, 2001 and No. 60/350,432 filed Jan. 22, 2002.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60296444 |
Jun 2001 |
US |
|
60350432 |
Jan 2002 |
US |