Electro-optic modulator for generating solitons
Abstract
A method and apparatus is provided for generating optical pulses with an electro-optic amplitude modulator. The modulator includes first and second waveguides that form an optical interferometer. At least the first waveguide includes an electro-optic material such as lithium niobate and an electrode extending along a portion thereof. Input and output optical waveguides are respectively coupled to input and output junctions of the interferometer. A voltage source biases the electrode such that a modulation switching curve arises that generates two optical pulses over a complete voltage cycle.
Claims
exact text as granted — not AI-modified1 . A method for generating optical pulses with an electro-optic amplitude modulator having a pair of waveguides and at least one pair of electrodes for controlling a refractive index of at least one of the waveguides, said method comprising the steps of:
receiving a cw optical signal at an input waveguide of the modulator; applying at least one electrical pulse to the electrode pair to modulate the cw optical signal so that an edge of the electrical pulse yields an optical pulse at an output waveguide of the modulator.
2 . The method of claim 1 wherein said optical pulse has a temporal width substantially equal to the temporal width of the edge.
3 . The method of claim 1 wherein said modulator is a lithium niobate modulator.
4 . The method of claim 1 further comprising the step of applying at least a second electrical pulse to a second electrode pair to modulate the cw optical signal so that an edge of the electrical pulse yields an optical pulse at an output waveguide of the modulator, wherein said electrical pulse and said second electrical pulse are 180 degrees out of phase with respect to one another.
5 . The method of claim 1 wherein said optical pulse corresponds to an optical bit of one, and further comprising the step of maintaining a constant voltage level between the electrode pair to generate an optical bit of zero.
6 . The method of claim 1 wherein said optical pulse corresponds to an optical bit of zero, and further comprising the step of maintaining a constant voltage level between the electrode pair to generate an optical bit of one.
7 . The method of claim 1 wherein the step of applying at least one electrical
15 . The method of claim 9 wherein said optical pulse is a soliton
16 . An electro-optic amplitude modulator, comprising:
first and second waveguides forming an optical interferometer, at least said first waveguide including an electro-optic material; an electrode extending along a portion of said first waveguide; an input and output optical waveguide respectively coupled to input and output junctions of the interferometer; a voltage source biasing said electrode such that a modulation switching curve arises that generates two optical pulses over a complete voltage cycle.
17 . The modulator of claim 16 wherein said electro-optic material is lithium niobate.
18 . The modulator of claim 16 wherein said voltage source generates an electrical waveform that is sinusoidal.
19 . The modulator of claim 16 further comprising a second electrode extending along a portion of the second waveguide.
20 . The modulator of claim 19 wherein said voltage source bias said first and second electrodes 180 degrees out of phase with respect to one another.
21 . The modulator of claim 16 wherein said optical pulses have a temporal width substantially equal to the time over which voltage applied to the electrode by the voltage source changes from a first to a second value.
22 . The modulator of claim 21 wherein said first and second values are minimum and maximum voltage levels, respectively.
23 . The modulator of claim 16 wherein said optical pulses are solitons.Join the waitlist — get patent alerts
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