PHOTONIC SYSTEM AND METHOD FOR ITS MANUFACTURE

    公开(公告)号:US20200233164A1

    公开(公告)日:2020-07-23

    申请号:US16748696

    申请日:2020-01-21

    Abstract: A photonic system includes a first photonic circuit having a first face and a second photonic circuit having a second face. The first photonic circuit comprises first wave guides, and, for each first wave guide, a second wave guide covering the first wave guide, the second wave guides being in contact with the first face and placed between the first face and the second face, the first wave guides being located on the side of the first face opposite the second wave guides. The second photonic circuit comprises, for each second wave guide, a third wave guide covering the second wave guide. The first photonic circuit comprises first positioning devices projecting from the first face and the second photonic circuit comprises second positioning devices projecting from the second face, at least one of the first positioning devices abutting one of the second positioning devices in a first direction.

    ELECTRO-OPTIC DEVICE WITH SEMICONDUCTOR JUNCTION AREA AND RELATED METHODS
    4.
    发明申请
    ELECTRO-OPTIC DEVICE WITH SEMICONDUCTOR JUNCTION AREA AND RELATED METHODS 审中-公开
    具有半导体结区的电光器件及相关方法

    公开(公告)号:US20170003449A1

    公开(公告)日:2017-01-05

    申请号:US14754994

    申请日:2015-06-30

    Abstract: An electro-optic device may include a photonic chip having an optical grating coupler at a surface. The optical grating coupler may include a first semiconductor layer having a first base and first fingers extending outwardly from the first base. The optical grating coupler may include a second semiconductor layer having a second base and second fingers extending outwardly from the second base and being interdigitated with the first fingers to define semiconductor junction areas, with the first and second fingers having a non-uniform width. The electro-optic device may include a circuit coupled to the optical grating coupler and configured to bias the semiconductor junction areas and change one or more optical characteristics of the optical grating coupler.

    Abstract translation: 电光器件可以包括在表面具有光栅耦合器的光子芯片。 光栅耦合器可以包括第一半导体层,其具有从第一基底向外延伸的第一基底和第一指状物。 光栅耦合器可以包括第二半导体层,第二半导体层具有从第二基底向外延伸的第二基极和第二指状物,并且与第一指状物交叉以限定半导体结区域,第一和第二指状物具有不均匀的宽度。 电光器件可以包括耦合到光栅耦合器并被配置为偏置半导体结区域并改变光栅耦合器的一个或多个光学特性的电路。

    ELECTRO-OPTIC (E/O) DEVICE WITH AN E/O AMPLITUDE MODULATOR AND ASSOCIATED METHODS
    5.
    发明申请
    ELECTRO-OPTIC (E/O) DEVICE WITH AN E/O AMPLITUDE MODULATOR AND ASSOCIATED METHODS 有权
    具有E / O振幅调制器的电光(E / O)器件及相关方法

    公开(公告)号:US20170059893A1

    公开(公告)日:2017-03-02

    申请号:US14836011

    申请日:2015-08-26

    Abstract: An electro-optic (E/O) device includes an asymmetric optical coupler having an input and first and second outputs, a first optical waveguide arm coupled to the first output of the first asymmetric optical coupler, and a second optical waveguide arm coupled to the second output of the first asymmetric optical coupler. At least one E/O amplitude modulator is coupled to at least one of the first and second optical waveguide arms. An optical combiner is coupled to the first and second optical waveguide arms downstream from the at least one E/O amplitude modulator.

    Abstract translation: 电光(E / O)装置包括具有输入和第一和第二输出的不对称光耦合器,耦合到第一非对称光耦合器的第一输出的第一光波导臂和耦合到第一和第二输出的第二光波导臂 第二非对称光耦合器的第二输出。 至少一个E / O振幅调制器耦合到第一和第二光波导臂中的至少一个。 光合成器耦合到至少一个E / O振幅调制器下游的第一和第二光波导臂。

    PHOTONIC SYSTEM AND METHOD FOR ITS MANUFACTURE

    公开(公告)号:US20230015854A1

    公开(公告)日:2023-01-19

    申请号:US17932623

    申请日:2022-09-15

    Abstract: A photonic system includes a first photonic circuit having a first face and a second photonic circuit having a second face. The first photonic circuit comprises first wave guides, and, for each first wave guide, a second wave guide covering the first wave guide, the second wave guides being in contact with the first face and placed between the first face and the second face, the first wave guides being located on the side of the first face opposite the second wave guides. The second photonic circuit comprises, for each second wave guide, a third wave guide covering the second wave guide. The first photonic circuit comprises first positioning devices projecting from the first face and the second photonic circuit comprises second positioning devices projecting from the second face, at least one of the first positioning devices abutting one of the second positioning devices in a first direction.

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