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    • 3. 发明申请
    • Optical junction apparatus and methods employing optical power transverse-transfer
    • 光学接合装置及采用光功率横向传输的方法
    • US20070110369A1
    • 2007-05-17
    • US11623688
    • 2007-01-16
    • Henry BlauveltKerry VahalaDavid VernooyJoel Paslaski
    • Henry BlauveltKerry VahalaDavid VernooyJoel Paslaski
    • G02B6/26
    • G02B6/2852G02B6/12002G02B6/12007G02B6/1228G02B6/125G02B6/2804G02B6/2821G02B6/30G02B6/305G02B6/42G02B6/4204G02B6/423G02B6/4232G02B6/4246G02B2006/12119G02B2006/12195Y10T29/49826
    • An optical apparatus comprises an optical device fabricated on a substrate, an external-transfer optical waveguide fabricated on the substrate and/or on the optical device, and a transmission optical waveguide. The optical device and/or the external-transfer waveguide are adapted for and positioned for transfer of optical power therebetween (end-transfer or transverse-transfer). The external-transfer waveguide and/or the transmission waveguide are adapted for transverse-transfer of optical power therebetween (mode-interference-coupled or adiabatic). The transmission waveguide is initially provided as a component mechanically separate from the substrate, device, and external-transfer waveguide. Assembly of the transmission waveguide with the substrate, device, and/or external-transfer waveguide results in relative positioning of the external-transfer waveguide and the transmission waveguide for enabling transverse-transfer of optical power therebetween. Optical power transfer between the device and the transmission waveguide through the external-transfer waveguide is thereby enabled. The transmission waveguide may preferably comprise a planar waveguide on a waveguide substrate.
    • 光学装置包括制造在基板上的光学装置,在基板上和/或光学装置上制造的外部转移光波导和透射光波导。 光学器件和/或外部传输波导适用于并定位用于在其间传递光功率(终端传输或横向传输)。 外部传输波导和/或传输波导适用于其间的光功率的横向传输(模干扰耦合或绝热)。 传输波导最初设置为与基板,器件和外部传输波导机械分离的部件。 具有衬底,器件和/或外部传输波导的传输波导的组装导致外部传输波导和传输波导的相对定位,以实现它们之间的光功率的横向传递。 从而能够通过外部传输波导在器件与透射波导之间进行光功率传递。 传输波导可以优选地包括在波导衬底上的平面波导。
    • 10. 发明申请
    • DUAL-FREQUENCY OPTICAL SOURCE
    • 双频光源
    • US20150236789A1
    • 2015-08-20
    • US14605987
    • 2015-01-26
    • Kerry VahalaJiang Li
    • Kerry VahalaJiang Li
    • H04B10/50H04B10/25H04L7/00
    • H04B10/2507H03B17/00H03L7/08H03L7/16H04B10/2504H04B10/2575H04B10/503H04B2210/006H04L7/0075H04L7/0091
    • A dual-frequency optical source comprises: (a) first and second pump laser sources arranged to generate optical pump power at respective first and second pump laser frequencies vpump1 and vpump2; and (b) a fiber optical resonator characterized by a Brillouin shift frequency vB and a free spectral range that is substantially equal to an integer submultiple of the Brillouin shift frequency. Each one of the first and second pump laser sources is frequency-locked to a corresponding resonant optical mode of the fiber optical resonator. First and second optical output signals of the dual-frequency optical reference source at respective first and second output frequencies v1=vpump1−vB and v2=vpump2−vB comprise stimulated Brillouin laser output generated by simultaneous optical pumping of the fiber optical resonator by the first and second pump laser sources, respectively. An output difference frequency v2−v1 is greater than about 300 GHz.
    • 双频光源包括:(a)第一和第二泵浦激光源,被布置成在相应的第一和第二泵浦激光频率vpump1和vpump2处产生光泵浦功率; 以及(b)以布里渊移动频率vB为特征的光纤谐振器,和基本上等于布里渊移动频率的整数倍的自由光谱范围。 第一和第二泵浦激光源中的每一个被频率锁定到光纤光谐振器的相应的谐振光学模式。 在相应的第一和第二输出频率v1 = vpump1-vB和v2 = vpump2-vB处的双频光参考源的第一和第二光输出信号包括通过第一和第二信号同时光纤泵浦光纤光学谐振器而产生的受激布里渊激光输出 和第二泵激光源。 输出差频v2-v1大于约300GHz。