Frequency-selective optical switch employing a frequency dispersive element, polarization dispersive element and polarization modulating elements
First Claim
1. An optical switch, comprising:
- a frequency-dispersive element receiving an input beam and dispersing it into a plurality of first beams according to frequency;
a polarization-dispersive element receiving said first beams and outputting corresponding second beams;
a segmented liquid-crystal polarization modulator receiving said second beams on respective segments thereof and selectively rotating polarizations thereof to form third beams; and
a reflector reflecting said third beams back through said polarization modulator, said polarization-dispersive element, and said frequency-dispersive element.
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Accused Products
Abstract
A liquid-crystal optical switch capable of switching separate optical signals in a physical input channel to a selected output channel. A diffraction grating spatially divides the input channel into its frequency components, which pass through different segments of a liquid-crystal modulator. The liquid-crystal modulator segments are separately controlled to rotate the polarization of the frequency channel passing therethrough or to leave it intact. The channels then pass through a polarization-dispersive element, such as calcite, which spatially separates the beams in the transverse direction according to their polarization. A second diffraction grating recombines the frequency components of the same polarization into multiple output beams.
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Citations
16 Claims
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1. An optical switch, comprising:
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a frequency-dispersive element receiving an input beam and dispersing it into a plurality of first beams according to frequency; a polarization-dispersive element receiving said first beams and outputting corresponding second beams; a segmented liquid-crystal polarization modulator receiving said second beams on respective segments thereof and selectively rotating polarizations thereof to form third beams; and a reflector reflecting said third beams back through said polarization modulator, said polarization-dispersive element, and said frequency-dispersive element.
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2. An optical switch comprising
an entrance frequency dispersive clement for receiving first and second input optical signals and dispersing them into dispersed beams according to the frequencies thereof, a focusing lens receiving said dispersed optical beams, a segmented polarization modulator having multiple individually controlled segments and positioned essentially at the focal length of said focusing lens for selectively controlling polarization characteristics of individual elements of said dispersed optical beams, a first polarization-dispersive element positioned between said focusing lens and said segmented polarization modulator, a second polarization-dispersive element positioned to the other side of said segmented polarization modulator than said first polarization-dispersive element for receiving the dispersed outputs of said segmented polarization modulator and for spatially displacing individual elements of said dispersed outputs dependent on the polarization thereof, an exit lens for receiving the outputs of said second polarization dispersive element, said exit lens being essentially its focal distance away from said segmented polarization modulator, and an exit frequency dispersive clement receiving the dispersed outputs from the second focusing lens and combining frequency components thereof into separate output optical signals.
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12. An optical switch comprising in sequence
a frequency dispersive element for receiving an input optical signal and dispersing it into a dispersed optical beam according to the frequencies thereof, a focusing lens receiving said dispersed optical beam, a polarization-dispersive element, a segmented polarization modulator having multiple individually controlled segments and positioned essentially at the local length of said focusing lens for selectively controlling the polarization characteristics of individual elements of said dispersed optical beam, and means for recombining said dispersed optical beam after passage through said segmented polarization modulator into an output beam.
Specification