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    • 4. 发明授权
    • Polarization-engineered transverse-optical-coupling apparatus and methods
    • 极化工程横向光耦合装置及方法
    • US06907169B2
    • 2005-06-14
    • US10284041
    • 2002-10-30
    • Kerry J. VahalaPeter C. SercelOskar J. PainterDavid W. VernooyDavid S. Alavi
    • Kerry J. VahalaPeter C. SercelOskar J. PainterDavid W. VernooyDavid S. Alavi
    • G02B6/126G02B6/30G02B6/34G02F1/035G02B6/26
    • G02B6/274G02B6/126G02B6/276G02B6/30G02F1/0353
    • An optical signal may be received into orthogonal linearly polarized modes of a transmission optical waveguide, the transmission waveguide including first and second transverse-coupling segments thereof. Optical signal polarized along one polarization direction may be substantially completely transferred from the transmission waveguide into a first transverse-coupled waveguide, the first transverse-coupled waveguide being optically transverse-coupled to the first transverse-coupling segment of the transmission waveguide. Optical signal polarized along the other polarization direction may be substantially completely transferred from the transmission waveguide into a second transverse-coupled waveguide, the second transverse-coupled waveguide being optically transverse-coupled to the second transverse-coupling segment of the transmission waveguide. The optical signals carried by the first and second transverse-coupled waveguides may be combined into a single waveguide. The polarization directions of the transmission waveguide may be rotated about 90° between the first and second transverse-coupling segments.
    • 光信号可以被接收到传输光波导的正交线性偏振模式中,该传输波导包括第一和第二横向耦合段。 沿着一个偏振方向偏振的光信号可以从传输波导基本上完全转移到第一横向耦合波导中,第一横向耦合波导在光学上横向耦合到传输波导的第一横向耦合段。 沿着另一偏振方向偏振的光信号可以从传输波导基本上完全转移到第二横向耦合波导中,第二横向耦合波导光学地横向耦合到传输波导的第二横向耦合段。 由第一和第二横向耦合波导承载的光学信号可以组合成单个波导。 传输波导的偏振方向可以在第一和第二横向耦合段之间旋转大约90°。
    • 10. 发明授权
    • Alignment apparatus and methods for transverse optical coupling
    • 横向光耦合对准装置及方法
    • US06870992B2
    • 2005-03-22
    • US10302751
    • 2002-11-22
    • Charles I. GrosjeanGuido HunzikerPaul M. BridgerOskar J. Painter
    • Charles I. GrosjeanGuido HunzikerPaul M. BridgerOskar J. Painter
    • G02B6/12G02B6/30G02B6/34G02B6/36G02B6/42G02F1/01G02F1/225H01L21/00
    • G02F1/225G02B6/12007G02B6/30G02B6/3636G02B6/3652G02B6/3692G02B6/4206G02B2006/12097G02B2006/12176G02F1/0118
    • Optical components may be aligned for transverse-optical coupling by: fabricating a first optical component on a substrate; fabricating an alignment member on the substrate suitably positioned relative to the first optical component; and assembling a second optical component onto the alignment member, thereby establishing transverse optical coupling between the optical components. The substrate may preferably be substantially planar. The alignment member may mechanically engage the second optical component so as to accurately establish and stably maintain transverse optical coupling. The first optical component and the alignment member may preferably be fabricated on the substrate using precision spatially selective materials processing techniques. Transverse optical coupling between two optical components may be stably maintained by substantially embedding transverse-coupled portions of the components in a substantially solid substantially transparent low-index medium. An alignment member may serve to accurately position the transverse-coupled components prior to embedding and hold them in place during embedding.
    • 光学部件可以通过以下方式对准:横向光耦合:在基板上制造第一光学部件; 在所述基板上制造相对于所述第一光学部件适当定位的对准部件; 并将第二光学部件组装到对准部件上,从而在光学部件之间建立横向光耦合。 衬底可以优选地基本上是平面的。 对准构件可以机械地接合第二光学部件,以便精确地建立和稳定地维持横向光耦合。 优选地,使用精确的空间选择性材料处理技术在第一基板上制造第一光学部件和对准部件。 通过将组分的横向耦合部分基本上嵌入基本上固体的基本上透明的低折射率介质中,可以稳定地维持两个光学部件之间的横向光学耦合。 对准构件可以用于在嵌入之前将横向耦合部件精确定位并将其保持在适当位置。