Claims
- 1. Optical switching apparatus, comprising:
an input port; an output port; a third port; optical apparatus coupled to said input port, said output port and said third port, said optical apparatus coupling optical signals from said input port in a first direction to said third port and coupling optical signals in a second direction at said third port to said output port; and Sagnac interferometer apparatus coupled to said third port, comprising:
an optical loop a coupler coupling each of said third port to said optical loop, said coupler splitting optical signals received at said first port and said second port into first optical signals propagating on said optical loop in a first direction and second optical signals propagating on said optical loop in a second direction, said first and second directions being counter-propagating directions, said optical signals comprising a plurality of wavelength components; and a plurality of phase modulators in said loop, each of said phase modulators coupled in said loop to receive corresponding wavelength components at one predetermined wavelength selected from a plurality of predetermined, each optical phase modulator being adapted to selectively provide a phase modulation to said corresponding wavelength component to control coupling of said corresponding wavelength component between said input port and said output port.
- 2. Apparatus in accordance with claim 1, comprising:
a plurality of wavelength selective branches disposed in said loop, each of said branches comprising one corresponding said phase modulator of said plurality of phase modulators.
- 3. Apparatus in accordance with claim 2, wherein:
each of said phase modulators is a bi-directional phase modulator.
- 4. Apparatus in accordance with claim 1, wherein:
each of said phase modulators is a bi-directional phase modulator.
- 5. Apparatus in accordance with claim 1, comprising:
a controller coupled to each of said optical phase modulators, to selectively control the phase modulation provided by each of said phase modulators.
- 6. Apparatus in accordance with claim 1, wherein:
said optical signals comprise said wavelength components as wavelength multiplexed signals.
- 7. Apparatus in accordance with claim 6, comprising:
first multiplex/de-multiplex apparatus disposed in said optical loop and coupled to said phase modulators to de-multiplex said wavelength multiplexed signals propagating in said first direction into constituent wavelength components and to multiplex wavelength components propagating in said second direction and received from said phase modulators into multiplexed second direction optical signals; and second multiplex/de-multiplex apparatus disposed in said optical loop and coupled to said phase modulators to de-multiplex said wavelength multiplexed signals propagating in said second direction into constituent wavelength components and to multiplex wavelength components propagating in said first direction and received from said phase modulators into multiplexed first direction optical signals.
- 8. Apparatus in accordance with claim 7, wherein:
each wavelength component of said first direction optical signals interferes with each corresponding wavelength component of said second direction optical signals in dependence upon the corresponding said phase modulation.
- 9. Apparatus in accordance with claim 4, wherein:
said coupler is a 50/50 coupler.
- 10. Apparatus in accordance with claim 1, wherein:
said optical loop comprises an optical fiber loop.
- 11. 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 to provide an optical signal first switched state or an optical signal second switched state.
- 12. Apparatus in accordance with claim 11, comprising:
a controller coupled to each of said phase modulators to select said first or said second phase shift.
- 13. Apparatus in accordance with claim 12, wherein:
said coupler is a 50/50 coupler.
- 14. Apparatus in accordance with claim 1, wherein:
each said optical phase modulator comprises a phase shifter, each said phase shifter responding to a control signals in a first control state to provide a first phase shift and responsive to a control signals in a second control state to provide a second phase shift.
- 15. Apparatus in accordance with claim 14, wherein:
each said phase shifter comprises a non-reciprocal phase shifter.
- 16. Apparatus in accordance with claim 15, comprising:
a controller coupled to each of said optical phase modulators to provide said control signals.
- 17. Apparatus in accordance with claim 14, wherein:
said first phase shift is selected so that a wavelength component subjected to said first phase shift and propagated in said first direction interferes with a corresponding wavelength component propagated in said second direction to produce a first interference result.
- 18. Apparatus in accordance with claim 17, wherein:
said second phase shift is selected so that a wavelength component propagated in said first direction interferes with said corresponding wavelength component propagated in said second direction to produce a second interference result.
- 19. Optical switching apparatus, comprising:
a circulator having an input port, an output port and a third port; a Sagnac interferometer coupled to said circulator third port, said Sagnac interferometer comprising:
a coupler having a fist port coupled to said circulator third port; a Sagnac loop coupled to said coupler; a plurality of phase modulators disposed in said Sagnac loop; and a controller for selectively controlling each of said phase modulators such that individual wavelength components of wavelength division multiplexed optical signals at said input port are selectively coupled to said output port.
- 20. Optical switching apparatus in accordance with claim 19, wherein:
each of said phase modulators comprises a non-reciprocal phase shifter.
- 21. Optical switching apparatus in accordance with claim 19, comprising:
a plurality of optical path branches coupled into said Sagnac loop, each of said branches comprising a corresponding one of said phase modulators, each path coupled into said Sagnac path such that a corresponding one said individual wavelength component is coupled thereto.
- 22. A method for selectively switching wavelength components of wavelength division multiplexed optical signals from and input port to an output port, comprising:
providing a circulator to couple said input and said output ports to a third port; coupling said third port to a Sagnac interferometer; providing in said Sagnac interferometer an optical loop; providing in said optical loop a plurality of phase modulators each selectively operable on wavelength components at a corresponding one wavelength selected from a plurality of predetermined wavelengths; and controlling each said phase modulator to selectively subject each said corresponding wavelength component to a first or a second predetermined phase shift such that said wavelength component is or is not selectively coupled to said output port.
- 23. A method in accordance with claim 22, comprising:
utilizing a controller to control each said phase modulator.
- 24. A method in accordance with claim 22, comprising:
utilizing a non-reciprocal phase shifter for each said phase modulator.
- 25. A method in accordance with claim 22, comprising:
separating said multiplexed wavelength components of said optical signals into non-multiplexed wavelength components; and coupling each non-multiplexed wavelength component to a corresponding one of said phase modulators.
RELATED APPLICATIONS
[0001] This application claims the benefit of prior U.S. Provisional Patent application Ser. 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 |