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    • 21. 发明申请
    • DUAL-RING SILICON ELECTRO-OPTIC MODULATOR
    • 双环硅电极调制器
    • US20110058765A1
    • 2011-03-10
    • US12879750
    • 2010-09-10
    • Qianfan Xu
    • Qianfan Xu
    • G02F1/035G02B6/12
    • G02F1/025G02B6/12007G02B6/29338G02B6/2938G02B2006/12142G02F1/0147G02F2203/055G02F2203/15
    • A device, system, and method for the electro-optic modulation of light. The device includes a substrate having a first ring waveguide and a second ring waveguide on the surface. The device includes a first p-doped region inside the first ring waveguide and a second p-doped region inside the second ring waveguide. The device includes a first n-doped region interposed between the first ring waveguide and the second ring waveguide, a second n-doped region outside the first ring waveguide, and a third n-doped region out the second ring waveguide. The device includes a first linear waveguide located on the surface adjacent to the first ring waveguide and the second ring waveguide. The device includes a fourth n-doped region on the surface located adjacent to the first linear waveguide. The device includes a control circuit configured to modulate light in the first linear waveguide using a voltage source and electrical connections.
    • 用于光电调制的装置,系统和方法。 该装置包括在表面上具有第一环形波导和第二环形波导的基板。 该器件包括第一环形波导内部的第一p掺杂区域和第二环形波导内部的第二p掺杂区域。 该器件包括介于第一环形波导和第二环形波导之间的第一n掺杂区域,第一环形波导外部的第二n掺杂区域和第二环形波导之外的第三n掺杂区域。 该装置包括位于与第一环形波导和第二环形波导相邻的表面上的第一线性波导。 该器件包括位于邻近第一线性波导的表面上的第四n掺杂区域。 该装置包括配置成使用电压源和电连接来调制第一线性波导中的光的控制电路。
    • 26. 发明授权
    • Dual-ring silicon electro-optic modulator
    • 双环硅电光调制器
    • US08582937B2
    • 2013-11-12
    • US12879750
    • 2010-09-10
    • Qianfan Xu
    • Qianfan Xu
    • G02B6/26G02B6/42
    • G02F1/025G02B6/12007G02B6/29338G02B6/2938G02B2006/12142G02F1/0147G02F2203/055G02F2203/15
    • A device, system, and method for the electro-optic modulation of light. The device includes a substrate having a first ring waveguide and a second ring waveguide on the surface. The device includes a first p-doped region inside the first ring waveguide and a second p-doped region inside the second ring waveguide. The device includes a first n-doped region interposed between the first ring waveguide and the second ring waveguide, a second n-doped region outside the first ring waveguide, and a third n-doped region out the second ring waveguide. The device includes a first linear waveguide located on the surface adjacent to the first ring waveguide and the second ring waveguide. The device includes a fourth n-doped region on the surface located adjacent to the first linear waveguide. The device includes a control circuit configured to modulate light in the first linear waveguide using a voltage source and electrical connections.
    • 用于光电调制的装置,系统和方法。 该装置包括在表面上具有第一环形波导和第二环形波导的基板。 该器件包括第一环形波导内部的第一p掺杂区域和第二环形波导内部的第二p掺杂区域。 该器件包括介于第一环形波导和第二环形波导之间的第一n掺杂区域,第一环形波导外部的第二n掺杂区域和第二环形波导之外的第三n掺杂区域。 该装置包括位于与第一环形波导和第二环形波导相邻的表面上的第一线性波导。 该器件包括位于邻近第一线性波导的表面上的第四n掺杂区域。 该装置包括配置成使用电压源和电连接来调制第一线性波导中的光的控制电路。
    • 29. 发明申请
    • OPTICAL LOGIC DEVICE
    • 光学逻辑器件
    • US20100328744A1
    • 2010-12-30
    • US12438720
    • 2007-08-24
    • Qianfan XuMichal Lipson
    • Qianfan XuMichal Lipson
    • G02F3/00
    • G02B6/29335G02B6/29338G02F3/02G02F2203/15
    • An all optical logic circuit includes a micro-ring resonator (110) optically coupled to a waveguide (115) The waveguide (115) provides multiple optical input signals (INPUT A, INPUT B) and an optical probe signal (PROBE) at a different frequency (lambda s) than the optical input signals (INPUT A, INPUT B) to the micro-ring resonator (110) such that the probe signal (PROBE) exhibits logical amplitude transitions as a function of the multiple input signals (INPUT A, INPUT B) The logical amplitude transitions of the optical probe signal (PROBE) correlate to an ANDing or NANDing of the optical input signals (INPUT A, INPUT B) In one embodiment, the all optical logic circuit is an integrated silicon device
    • 所有光学逻辑电路包括光耦合到波导(115)的微环谐振器(110)。波导(115)提供多个光输入信号(INPUT A,INPUT B)和光探针信号(PROBE) 频率(λs)大于光输入信号(INPUT A,INPUT B)到微环谐振器(110),使得探针信号(PROBE)表现出作为多个输入信号(INPUT A, 输入B)光学探针信号(PROBE)的逻辑幅度转换与光输入信号(INPUT A,INPUT B)的“与”或“与”相关联。在一个实施例中,全部光逻辑电路是集成硅器件