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    • 24. 发明授权
    • Optical waveguide coupling device and associated methods
    • 光波导耦合器件及相关方法
    • US08452141B2
    • 2013-05-28
    • US12847885
    • 2010-07-30
    • Kai-Mei Camilla FuMichael Renne Ty TanZhen Peng
    • Kai-Mei Camilla FuMichael Renne Ty TanZhen Peng
    • G02B6/26G02B6/42
    • G02B6/34G02B6/29311
    • The present disclosure provides optical waveguide coupling devices and associated methods. In one example, an optical waveguide coupling device can comprise a dielectric grating coupler, a first optical waveguide attached to a first surface of the dielectric grating coupler, and a second optical waveguide attached to a second surface of the dielectric grating coupler. The second optical waveguide can be oriented opposed to the first optical waveguide allowing for communication therebetween via the sub-wavelength grating. Additionally, the dielectric grating coupler can comprise a first dielectric material; a sub-wavelength grating attached to the first dielectric material, the sub-wavelength grating having a higher refractive index than the first dielectric material; and a second dielectric material optically coupled to the sub-wavelength grating.
    • 本公开提供了光波导耦合装置和相关联的方法。 在一个示例中,光波导耦合装置可以包括介质光栅耦合器,附接到介质光栅耦合器的第一表面的第一光波导和附着到介质光栅耦合器的第二表面的第二光波导。 第二光波导可以被定向成与第一光波导相对,允许经由子波长光栅在其间进行通信。 另外,介质光栅耦合器可以包括第一电介质材料; 附接到第一介电材料的子波长光栅,所述子波长光栅具有比所述第一介电材料更高的折射率; 以及光学耦合到子波长光栅的第二介电材料。
    • 25. 发明申请
    • OPTICAL WAVEGUIDE COUPLING DEVICE AND ASSOCIATED METHODS
    • 光波导耦合器件及相关方法
    • US20120027350A1
    • 2012-02-02
    • US12847885
    • 2010-07-30
    • Kai-Mei Camilla FuMichael Renne Ty TanZhen Peng
    • Kai-Mei Camilla FuMichael Renne Ty TanZhen Peng
    • G02B6/34
    • G02B6/34G02B6/29311
    • The present disclosure provides optical waveguide coupling devices and associated methods. In one example, an optical waveguide coupling device can comprise a dielectric grating coupler, a first optical waveguide attached to a first surface of the dielectric grating coupler, and a second optical waveguide attached to a second surface of the dielectric grating coupler. The second optical waveguide can be oriented opposed to the first optical waveguide allowing for communication therebetween via the sub-wavelength grating. Additionally, the dielectric grating coupler can comprise a first dielectric material; a sub-wavelength grating attached to the first dielectric material, the sub-wavelength grating having a higher refractive index than the first dielectric material; and a second dielectric material optically coupled to the sub-wavelength grating.
    • 本公开提供了光波导耦合装置和相关联的方法。 在一个示例中,光波导耦合装置可以包括介质光栅耦合器,附接到介质光栅耦合器的第一表面的第一光波导和附着到介质光栅耦合器的第二表面的第二光波导。 第二光波导可以被定向成与第一光波导相对,允许经由子波长光栅在其间进行通信。 另外,介质光栅耦合器可以包括第一电介质材料; 附接到第一介电材料的子波长光栅,所述子波长光栅具有比所述第一介电材料更高的折射率; 以及光学耦合到子波长光栅的第二介电材料。
    • 27. 发明申请
    • COMPACT SENSOR SYSTEM
    • 紧凑型传感器系统
    • US20110267610A1
    • 2011-11-03
    • US12772063
    • 2010-04-30
    • Min HUWei WuFung Suong OuZhen PengZhiyong LiR. Stanley Williams
    • Min HUWei WuFung Suong OuZhen PengZhiyong LiR. Stanley Williams
    • G01J3/44
    • G01N21/658G01N21/7746
    • A compact sensor system comprising: an analysis cell configured for photon-matter interaction, where photons are received from a light source; and an integrated-optical spectral analyzer configured for identifying a set of frequencies, the integrated-optical spectral analyzer comprising: a waveguide coupled with the analysis cell, the waveguide configured for propagating a set of frequencies through the waveguide; one or more ring resonators coupled with the waveguide, the one or more ring resonators comprising a predetermined bandwidth and configured for capturing the set of frequencies corresponding to frequencies within the predetermined bandwidth; and one or more frequency detectors coupled with the one or more tunable ring resonators, the one or more frequency detectors configured for generating electrical signals that identify each of the set of frequencies.
    • 一种紧凑的传感器系统,包括:配置用于光子 - 物质相互作用的分析单元,其中从光源接收光子; 所述集成光谱分析仪包括:与所述分析单元耦合的波导,所述波导被配置为通过所述波导传播一组频率;以及波导,其被配置为用于识别一组频率。 一个或多个与所述波导耦合的环形谐振器,所述一个或多个环形谐振器包括预定带宽并被配置用于捕获与所述预定带宽内的频率相对应的频率集合; 以及与所述一个或多个可调环形谐振器耦合的一个或多个频率检测器,所述一个或多个频率检测器被配置用于产生标识所述一组频率中的每一个的电信号。
    • 29. 发明授权
    • Compact sensor system
    • 紧凑型传感器系统
    • US08319963B2
    • 2012-11-27
    • US12772063
    • 2010-04-30
    • Min HuWei WuFung Suong OuZhen PengZhiyong LiR. Stanley Williams
    • Min HuWei WuFung Suong OuZhen PengZhiyong LiR. Stanley Williams
    • G01J3/44
    • G01N21/658G01N21/7746
    • A compact sensor system comprising: an analysis cell configured for photon-matter interaction, where photons are received from a light source; and an integrated-optical spectral analyzer configured for identifying a set of frequencies, the integrated-optical spectral analyzer comprising: a waveguide coupled with the analysis cell, the waveguide configured for propagating a set of frequencies through the waveguide; one or more ring resonators coupled with the waveguide, the one or more ring resonators comprising a predetermined bandwidth and configured for capturing the set of frequencies corresponding to frequencies within the predetermined bandwidth; and one or more frequency detectors coupled with the one or more tunable ring resonators, the one or more frequency detectors configured for generating electrical signals that identify each of the set of frequencies.
    • 一种紧凑的传感器系统,包括:配置用于光子 - 物质相互作用的分析单元,其中从光源接收光子; 所述集成光谱分析仪包括:与所述分析单元耦合的波导,所述波导被配置为通过所述波导传播一组频率;以及波导,其被配置为用于识别一组频率。 一个或多个与所述波导耦合的环形谐振器,所述一个或多个环形谐振器包括预定带宽并被配置用于捕获与所述预定带宽内的频率相对应的频率集合; 以及与所述一个或多个可调环形谐振器耦合的一个或多个频率检测器,所述一个或多个频率检测器被配置用于产生标识所述一组频率中的每一个的电信号。