Electrooptic thin-film modulator
First Claim
1. An electrooptic modulator comprising:
- a light waveguide of an electrooptic crystalline composite structure including a substrate having a surface of a plane defined by rectangular coordinate first and second axes, a light transmissible thin-film per se having an electrooptic property and deposited on said surface of the substrate, and a buffer layer deposited on said thin-film;
a light source emitting a coherent light beam;
an input light coupler coupling said coherent light beam into said thin-film as a mode of guided wave propagating in the direction of said first axis;
interdigital electrodes engraved from a deposited metal layer on said light waveguide to cause therein an electric field which has spatial periodicity larger than the total thickness of said thin-film and buffer layers in the direction of said second axis and uniform in the direction of said first axis;
a voltage source connected to said electrodes to apply thereto a modulating signal voltage; and
an output light coupler coupling the propagated light wave out of said waveguide, the coupled out light being diffracted into orders.
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Abstract
On a substrate is formed a crystalline electrooptic thin-film waveguide, on which are deposited interdigital electrodes extending in the y-direction and spaced apart from one to another in the z-direction. To the electrodes is applied a modulating signal voltage to form in the waveguide an electrostatic field which is spatially periodic in the z-direction having an intensity proportional to the modulating signal voltage and uniform in the y-direction. Coherent light is coupled into and out of the waveguide with prism couplers. As the light propagates through the waveguide in the y-direction, it suffers a spatially periodic phase variation in the z-direction. The emerging light is accordingly diffracted into orders. The crystalline waveguide is manufactured easily and the light propagates fully through the electrostatic field.
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Citations
11 Claims
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1. An electrooptic modulator comprising:
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a light waveguide of an electrooptic crystalline composite structure including a substrate having a surface of a plane defined by rectangular coordinate first and second axes, a light transmissible thin-film per se having an electrooptic property and deposited on said surface of the substrate, and a buffer layer deposited on said thin-film; a light source emitting a coherent light beam; an input light coupler coupling said coherent light beam into said thin-film as a mode of guided wave propagating in the direction of said first axis; interdigital electrodes engraved from a deposited metal layer on said light waveguide to cause therein an electric field which has spatial periodicity larger than the total thickness of said thin-film and buffer layers in the direction of said second axis and uniform in the direction of said first axis; a voltage source connected to said electrodes to apply thereto a modulating signal voltage; and an output light coupler coupling the propagated light wave out of said waveguide, the coupled out light being diffracted into orders. - View Dependent Claims (2, 3, 4, 5, 6, 7)
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8. An electrooptic modulator comprising:
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a light waveguide of an electrooptic crystalline composite structure including a substrate of an electrooptic crystal having a refractive index ns and having a surface of a plane defined by rectangular coordinate first and second axes, a light transmissible thin-film of a thickness d per se not having electrooptic property deposited on said surface of the substrate and a buffer layer deposited on said thin-film; a light source emitting light beam; an input light coupler coupling said coherent light beam into said thin-film as a definite mode of guided wave propagating in the direction of said first axis with a wave vector kg ; interdigital electrodes engraved from a deposited metal layer on said light waveguide to cause therein an electric field which has spatial periodicity larger than the total thickness of said thin-film and said buffer layer in the direction of said second axis and uniform in the direction of said first axis; a voltage source connected to said electrodes to apply thereto a modulating signal voltage; an output light coupler coupling the propagated light wave of said mode out of said waveguide, the coupled out light beam being diffracted into orders; and wherein said thickness d of the thin-film is larger but not so much than the cutoff value corresponding to said mode that the derivative of said wave vector kg of said mode with regard to said refractive index ns is not much less than the wave vector in the free space. - View Dependent Claims (9, 10, 11)
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Specification