Claims
- 1. Mach-Zehnder interferometer apparatus, comprising:
a first optical signal port for receiving optical signals comprising a plurality of wavelength components, said wavelength components each being at a predetermined wavelength selected from a plurality of predetermined wavelengths; a first optical arm; a second optical arm; a first coupler coupling said first optical signal port to said first and second optical arms, said coupler splitting each wavelength component into a wavelength component first portion propagating on said first optical arm and a wavelength component second portion propagating on said second optical arm; a second coupler coupled to said first and said second optical arms; and a plurality of phase modulators in said first arm, each of said phase modulator being operable to phase modulate wavelength component first portions at a corresponding one wavelength of said plurality of predetermined wavelengths.
- 2. Apparatus in accordance with claim 1, wherein:
said optical signals comprise said wavelength components as wavelength division multiplexed signals.
- 3. Apparatus in accordance with claim 2, comprising:
a de-multiplexer coupling said first optical arm to each said phase modulator; and a multiplexer coupling each said phase modulator to said first arm.
- 4. Apparatus in accordance with claim 1, comprising:
a controller coupled to each said phase modulator, to selectively control each said phase modulator.
- 5. Apparatus in accordance with claim 4, wherein:
said optical signals comprise said wavelength components as wavelength multiplexed signals.
- 6. Apparatus in accordance with claim 5, comprising:
a de-multiplexer disposed in said first optical arm to de-multiplex multiplexed said wavelength component first portions and couple each said wavelength component first portion to a corresponding one of said phase modulators; and a multiplexer coupled to each of said phase modulators to multiplex wavelength component first portions from said phase onto said first optical arm.
- 7. Apparatus in accordance with claim 6, wherein:
each wavelength component first portion interferes with each corresponding wavelength second portion at said second coupler.
- 8. Apparatus in accordance with claim 1, wherein:
each of said first and second couplers is a 50/50 coupler.
- 9. Apparatus in accordance with claim 1, wherein:
said second arm comprises an optical fiber waveguide.
- 10. Apparatus in accordance with claim 1, wherein:
each of said phase modulators is selectively operable to provide a first predetermined phase shift or a second predetermined phase shift.
- 11. Apparatus in accordance with claim 10, comprising:
a controller coupled to each of said phase modulators to select said first or said second phase shift.
- 12. Apparatus in accordance with claim 11, wherein:
each of said phase modulators is a non-reciprocal phase shifter.
- 13. Apparatus in accordance with claim 1, wherein:
each said optical phase modulator comprises a phase shifter, each said phase shifter responding to a first control signal to provide a first phase shift and responsive to a second control signal to provide a second phase shift.
- 14. Apparatus in accordance with claim 13, wherein:
each said phase shifter comprises a non-reciprocal phase shifter.
- 15. Apparatus in accordance with claim 14, comprising:
a controller coupled to each of said optical phase modulators to provide said control signals.
- 16. Apparatus in accordance with claim 15, wherein:
said first phase shift is selected so that a wavelength component first portion subjected to said first phase shift interferes with a corresponding wavelength component second portion to produce a first interference result.
- 17. Apparatus in accordance with claim 16, wherein:
said second phase shift is selected so that a wavelength component first portion subjected to said second phase shift interferes with said corresponding wavelength component second portion to produce a second interference result.
- 18. Apparatus in accordance with claim 13, wherein:
said first phase shift is selected so that a wavelength component first portion interferes with a corresponding wavelength component second portion to produce a first interference result.
- 19. Apparatus in accordance with claim 18, wherein:
said second phase shift is selected so that a wavelength component first portion interferes with said corresponding wavelength component second portion to produce a second interference result.
- 20. A method for providing a Mach-Zehnder interferometer for optical signals, said optical signals comprising a plurality of multiplexed wavelength components, each said wavelength component being at a predetermined wavelength selected from a plurality of predetermined wavelengths, said method comprising:
splitting said each said wavelength component into a wavelength component first portion and a wavelength component second portion; coupling each said wavelength component first portion onto a first optical arm and coupling each said wavelength component second portion onto a second optical arm; providing a plurality of phase modulators in said first arm; operating each said phase modulator so as to receive wavelength component first portions at one said predetermined wavelength; controlling each said phase modulator to provide a predetermined corresponding phase shift to each corresponding wavelength component first portion; combining each wavelength component first portion and each corresponding wavelength component second portion on a wavelength-by-wavelength basis to produce predetermined interferences state for each of said wavelength components.
- 21. A method in accordance with claim 20, comprising:
utilizing a controller to control each said phase modulator.
- 22. A method in accordance with claim 20, comprising:
utilizing a non-reciprocal phase shifter for each said phase modulator.
- 23. A method in accordance with claim 20, comprising:
separating said multiplexed wavelength component first portions into non-multiplexed wavelength component first portions; and coupling each non-multiplexed wavelength component first portion to a corresponding one of said phase modulators.
RELATED APPLICATIONS
[0001] This application claims the benefit of prior U.S. Provisional Patent application Serial No. 60/240,623 filed Oct. 16, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60240623 |
Oct 2000 |
US |