THERMALLY-CONTROLLED PHOTONIC STRUCTURE

    公开(公告)号:US20210344166A1

    公开(公告)日:2021-11-04

    申请号:US17032787

    申请日:2020-09-25

    Abstract: In some implementations, a thermally-controlled photonic structure may include a suspended region that is suspended over a substrate; a plurality of bridge elements connected to the suspended region and configured to suspend the suspended region over the substrate, where a plurality of openings are defined between the plurality of bridge elements; and at least one heater element having a modulated width disposed on the suspended region. The at least one heater element having the modulated width may include at least one section of a greater width and at least one section of a lesser width. The at least one section of the greater width may be in alignment with an opening of the plurality of openings and the at least one section of the lesser width may be in alignment with a bridge element of the plurality of bridge elements.

    DUAL POLARIZATION ARRAYED WAVEGUIDE GRATING
    3.
    发明申请

    公开(公告)号:US20180052282A1

    公开(公告)日:2018-02-22

    申请号:US15240047

    申请日:2016-08-18

    Abstract: A 1×N demultiplexer may include an input slab to distribute an input beam, including one or more wavelengths of light, among waveguides of a waveguide array. The wavelengths of light may comprise TE polarized light and TM polarized light. The 1×N demultiplexer may include the waveguide array to propagate a plurality of beams via the waveguides. The 1×N demultiplexer may include an output slab to cause N TE polarized beams and N TM polarized beams to be formed based on the plurality of beams. The 1×N demultiplexer may include a set of N TE output ports and a set of N TM output ports coupled to the output slab. A TE output port may receive a TE polarized beam of the N TE polarized beams. A TM output port may receive a TM polarized beam of the N TM polarized beams.

    THERMALLY-CONTROLLED PHOTONIC STRUCTURE

    公开(公告)号:US20230073927A1

    公开(公告)日:2023-03-09

    申请号:US18054989

    申请日:2022-11-14

    Abstract: In some implementations, a thermally-controlled photonic structure may include a suspended region that is suspended over a substrate; a plurality of bridge elements connected to the suspended region and configured to suspend the suspended region over the substrate, where a plurality of openings are defined between the plurality of bridge elements; and at least one heater element having a modulated width disposed on the suspended region. The at least one heater element having the modulated width may include at least one section of a greater width and at least one section of a lesser width. The at least one section of the greater width may be in alignment with an opening of the plurality of openings and the at least one section of the lesser width may be in alignment with a bridge element of the plurality of bridge elements.

    OPTICAL COUPLING STRUCTURE FOR COUPLING AN INTEGRATED SILICON GERMANIUM PHOTODETECTOR/TRANSIMPEDANCE AMPLIFIER AND AN INTEGRATED OPTICS CIRCUIT

    公开(公告)号:US20200081202A1

    公开(公告)日:2020-03-12

    申请号:US16126841

    申请日:2018-09-10

    Abstract: An optical device may include an optical coupling structure to couple a silicon-germanium photodetector to an integrated optics circuit. The optical coupling structure may comprise a silicon waveguide. The silicon waveguide may be tapered such that a thickness of the silicon waveguide at a first end of the optical coupling structure is smaller than a thickness of the silicon waveguide at a second end of the optical coupling structure, and may be tapered such that a width of the silicon waveguide at the first end is smaller than a width of the silicon waveguide at the second end. The optical coupling structure may include a silicon-nitride waveguide that covers the silicon waveguide, and is tapered such that a width of the silicon-nitride waveguide at the first end is smaller than a width of the silicon-nitride waveguide at the second end. The optical coupling structure may include a silica waveguide.

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