Claims
- 1. Optical signal apparatus, comprising:
an input port for receiving optical signals comprising a plurality of wavelength components, each wavelength component being at a predetermined wavelength selected from a plurality of predetermined wavelengths; an output port; an add port for receiving add optical signals, said add signals comprising one or more add wavelength components, each said add wavelength component being at a wavelength selected from said plurality of predetermined wavelengths; a drop port; a Mach-Zehnder interferometer coupled to said input port, said add port, said output port, and said drop port, said Mach-Zehnder interferometer comprising: a first optical arm, said first arm carrying wavelength component first portions and add wavelength component first portions; a second optical arm, said second arm carrying wavelength component second portions and add wavelength component second portions; and a plurality of phase modulators in said first arm, each of said phase modulator being operable to phase modulate wavelength component first portions and add component first portions at a selected one of said predetermined wavelengths such that selected ones of said wavelength components are coupled to said output port, unselected ones of said wavelength components are coupled to said drop port, and selected ones of said add wavelength components are coupled to said output port.
- 2. Apparatus in accordance with claim 1, comprising:
a wavelength component de-multiplexer coupling said plurality of phase modulators into said first arm; and a wavelength component multiplexer coupling said plurality of phase modulators into said first arm.
- 3. Apparatus in accordance with claim 1, comprising:
a controller coupled to each said phase modulator, to selectively provide phase modulation control signals to each of said phase modulators.
- 4. Apparatus in accordance with claim 1, wherein:
said optical signals comprise said wavelength components as wavelength division multiplexed signals.
- 5. Apparatus in accordance with claim 4, comprising:
first apparatus disposed in said first arm and coupled to said phase modulators to demultiplex said wavelength division multiplexed signals propagating in a first direction in said first arm into constituent wavelength components; and second apparatus disposed in said first arm and coupled to said phase modulators to multiplex constituent wavelength components propagating from said each of said phase modulators into wavelength division multiplexed phase modulated optical signals.
- 6. Apparatus in accordance with claim 5, wherein:
each wavelength component first portion interferes with each corresponding wavelength component second portion in dependence upon said phase modulation provided by the corresponding one phase modulator.
- 7. Apparatus in accordance with claim 1, comprising:
a first coupler coupling said input and add ports to said first and second arms; a second coupler coupling said first and said second arms to said output and drop ports; and each of said first and second couplers is a 50/50 coupler.
- 8. Apparatus in accordance with claim 1, wherein:
said second arm comprises an optical fiber waveguide.
- 9. 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.
- 10. Apparatus in accordance with claim 9, comprising:
a controller coupled to each of said phase modulators to select said first or said second phase shift.
- 11. Apparatus in accordance with claim 1, wherein:
each said 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.
- 12. Apparatus in accordance with claim 11, comprising:
a controller coupled to each of said phase modulators to provide said control signals.
- 13. Apparatus in accordance with claim 12, 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 such that said second coupler couples said wavelength component from said input port to said output port.
- 14. Apparatus in accordance with claim 13, 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 such that said second coupler couples said add wavelength component to said output port and couples said corresponding wavelength component to said drop port.
- 15. Apparatus in accordance with claim 11, 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 such that said second coupler couples said wavelength component from said first port to said second port.
- 16. A method for selectively switching wavelength components of wavelength division multiplexed optical signals from an input port to an output port or to a drop port on a wavelength component by wavelength component basis and for selectively switching add wavelength components from an add port to said output port all on a wavelength by wavelength component basis, comprising:
providing a Mach-Zehnder interferometer coupled to said input , output, add and drop ports coupling said input port and said add port to first and second arms; coupling said first and second arms to said output and drop ports; providing in said first arm a plurality of phase modulators, each said phase modulators receiving corresponding predetermined ones of wavelength components of said optical signals at said input and said add ports; and controlling each said phase modulator to provide a predetermined corresponding phase shift to each corresponding wavelength component of said optical signals at said input port and said add port such that said wavelength components of optical signals are selectively coupled from said input port to said output port or said drop port, and from said input port and said add port to said output port.
- 17. A method in accordance with claim 16, comprising:
utilizing a controller to control each said phase modulator.
- 18. A method in accordance with claim 16, comprising:
separating said multiplexed wavelength components of said first 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 |