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    • 44. 发明申请
    • BEAM GENERATION AND STEERING WITH INTEGRATED OPTICAL CIRCUITS FOR LIGHT DETECTION AND RANGING
    • 具有集成光电路的光束生成和转向用于光检测和范围
    • US20100187442A1
    • 2010-07-29
    • US12511201
    • 2009-07-29
    • Michael J. HochbergTom Baehr-Jones
    • Michael J. HochbergTom Baehr-Jones
    • G21K5/04G02B6/125G01C3/08
    • G02B6/12007G01S7/4813G01S7/4814G01S17/42G21K1/025
    • An integrated photonic beam steering device includes a planar photonic substrate. An input waveguide is configured to accept an electromagnetic energy from a source of electromagnetic energy radiation. A first splitter is configured to split the electromagnetic radiation into one or more paths. One or more phased array rows are optically coupled to each of the one or more paths. Each phased array row includes a row splitter configured to split the each of the one or more paths into two or more row paths. Two or more phase modulators are each optically coupled respectively to each of the two or more row paths. Two or more output couplers are optically coupled respectively to each phase modulator output of the two or more phase modulators. The two or more output couplers are configured to radiate a steered photonic beam away from the integrated photonic beam steering device.
    • 集成光子束转向装置包括平面光子衬底。 输入波导被配置为从电磁能辐射源接受电磁能。 第一分离器被配置成将电磁辐射分成一个或多个路径。 一个或多个相控阵列行光耦合到一个或多个路径中的每一个。 每个相控阵列行包括配置成将一个或多个路径中的每一个划分成两个或更多个行路径的行分配器。 两个或更多个相位调制器分别光耦合到两个或更多个行路径中的每一个。 两个或更多个输出耦合器分别光耦合到两个或多个相位调制器的每个相位调制器输出。 两个或更多个输出耦合器被配置为辐射远离集成光子束转向装置的转向光子束。
    • 47. 发明授权
    • Low loss terahertz waveguides, and terahertz generation with nonlinear optical systems
    • 低损耗太赫兹波导和非线性光学系统的太赫兹生成
    • US07480434B2
    • 2009-01-20
    • US11828178
    • 2007-07-25
    • Michael J. HochbergTom Baehr-Jones
    • Michael J. HochbergTom Baehr-Jones
    • G02B6/00
    • H01S1/02
    • A silicon based source for radiation in the 0.5-14 Terahertz regime. This new class of devices will permit continuously tunable, milli-Watt scale, continuous-wave, room temperature operation, a substantial advance over currently available technologies. The Silicon Terahertz Generator (STG) employs a silicon waveguide for near infrared radiation, situated within a metal waveguide for Terahertz radiation. A nonlinear polymer cladding permits two near-infrared lasers to mix, and through difference frequency generation produces Terahertz output. The small dimensions of the design greatly increase the optical fields, enhancing the nonlinear effect. The design can also be used to detect Terahertz radiation.
    • 在0.5-14太赫兹体系中用于辐射的硅基源。 这种新型设备将允许连续可调,毫瓦级,连续波,室温运行,比现有技术大幅提升。 硅太赫兹发生器(STG)采用位于用于太赫兹辐射的金属波导内的近红外辐射的硅波导。 非线性聚合物包层允许两个近红外激光器混合,并且通过差频产生产生太赫兹输出。 设计的小尺寸大大增加了光场,增强了非线性效应。 该设计也可用于检测太赫兹辐射。