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    • 9. 发明授权
    • Integrated resonant micro-optical gyroscope and method of fabrication
    • 集成谐振微光陀螺仪及其制作方法
    • US07106448B1
    • 2006-09-12
    • US10780799
    • 2004-02-17
    • G. Allen VawterWalter J. ZubrzyckiJunpeng GuoCharles T. Sullivan
    • G. Allen VawterWalter J. ZubrzyckiJunpeng GuoCharles T. Sullivan
    • G01C19/72G02B6/02
    • G02B6/42G01C19/72G01C19/727G02B6/12004G02B2006/12107G02B2006/12142G02B2006/12176G02B2006/12178
    • An integrated optic gyroscope is disclosed which is based on a photonic integrated circuit (PIC) having a bidirectional laser source, a pair of optical waveguide phase modulators and a pair of waveguide photodetectors. The PIC can be connected to a passive ring resonator formed either as a coil of optical fiber or as a coiled optical waveguide. The lasing output from each end of the bidirectional laser source is phase modulated and directed around the passive ring resonator in two counterpropagating directions, with a portion of the lasing output then being detected to determine a rotation rate for the integrated optical gyroscope. The coiled optical waveguide can be formed on a silicon, glass or quartz substrate with a silicon nitride core and a silica cladding, while the PIC includes a plurality of III–V compound semiconductor layers including one or more quantum well layers which are disordered in the phase modulators and to form passive optical waveguides.
    • 公开了一种基于具有双向激光源的光子集成电路(PIC),一对光波导相位调制器和一对波导光电探测器的集成光学陀螺仪。 PIC可以连接到形成为光纤线圈或作为卷绕的光波导的无源环形谐振器。 来自双向激光源的每端的激光输出相位调制并且在两个反向传播方向上围绕无源环形谐振器引导,然后检测激光输出的一部分以确定集成光学陀螺仪的旋转速率。 卷绕的光波导可以在具有氮化硅芯和二氧化硅包层的硅,玻璃或石英衬底上形成,而PIC包括多个III-V化合物半导体层,包括一个或多个量子阱层,其在 相位调制器和形成无源光波导。
    • 10. 发明授权
    • Vertically-tapered optical waveguide and optical spot transformer formed therefrom
    • 由其形成的垂直锥形光波导和光点变压器
    • US06768855B1
    • 2004-07-27
    • US09900004
    • 2001-07-05
    • Thor BakkeCharles T. Sullivan
    • Thor BakkeCharles T. Sullivan
    • G02B610
    • G02B6/1228
    • An optical waveguide is disclosed in which a section of the waveguide core is vertically tapered during formation by spin coating by controlling the width of an underlying mesa structure. The optical waveguide can be formed from spin-coatable materials such as polymers, sol-gels and spin-on glasses. The vertically-tapered waveguide section can be used to provide a vertical expansion of an optical mode of light within the optical waveguide. A laterally-tapered section can be added adjacent to the vertically-tapered section to provide for a lateral expansion of the optical mode, thereby forming an optical spot-size transformer for efficient coupling of light between the optical waveguide and a single-mode optical fiber. Such a spot-size transformer can also be added to a III-V semiconductor device by post processing.
    • 公开了一种光波导,其中通过控制下面的台面结构的宽度,通过旋涂形成波导芯的一部分在形成期间是垂直的。 光波导可以由可旋涂材料形成,例如聚合物,溶胶凝胶和旋涂玻璃。 垂直锥形波导部分可用于提供光波导内的光学模式的垂直扩展。 可以在垂直锥形部分附近添加横向锥形部分以提供光学模式的横向扩展,从而形成用于在光波导和单模光纤之间有效耦合光的光点尺寸变压器 。 这样的点尺寸变压器也可以通过后处理添加到III-V半导体器件。