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    • 3. 发明申请
    • OPTICAL MICRORESONATOR SYSTEM
    • 光学微型放大器系统
    • US20120012739A1
    • 2012-01-19
    • US13142019
    • 2009-12-17
    • Barry J. KochTerry L. SmithJun-Ying ZhangYasha Yi
    • Barry J. KochTerry L. SmithJun-Ying ZhangYasha Yi
    • G01J1/04
    • G01N21/77G01N2021/7789G02B6/12007G02B6/29341
    • An optical device includes a light source (102), an optical microresonator (118) that supports at least a first optical guided mode (128) propagating along a first direction and at least a second optical guided mode (164) propagating along a second direction different from the first direction, and a detector (110,114). At least the first optical guided mode is excited by the emitted broadband light without the second optical guided mode being excited by the emitted broadband light. In some embodiments The detector receives and wavelength-averages light from the at least a second optical guided mode of the optical microresonator. In some embodiments, at least one of the light source, the microresonator and the detector is tunable.
    • 光学装置包括光源(102),光学微谐振器(118),其支撑沿着第一方向传播的至少第一光学引导模式(128)和沿着第二方向传播的至少第二光学引导模式(164) 与第一方向不同,以及检测器(110,114)。 至少第一光导模式被发射的宽带光激励,而第二光导模式不被发射的宽带光激励。 在一些实施例中,检测器接收并波长平均来自光学微谐振器的至少第二光学引导模式的光。 在一些实施例中,光源,微谐振器和检测器中的至少一个是可调谐的。
    • 8. 发明申请
    • Optical Sensing Devices and Methods
    • 光学传感器件和方法
    • US20090310902A1
    • 2009-12-17
    • US11617932
    • 2006-12-29
    • Terry L. SmithBarry J. KochYasha Yi
    • Terry L. SmithBarry J. KochYasha Yi
    • G02B6/00
    • G01N21/7746
    • An optical sensing system and method of using it includes a light source and a first bus waveguide having an input port that is in optical communication with the light source. The system further includes a microresonator configured so that the light source excites at least first and second resonant guided optical modes of the microresonator. The microresonator includes a first location on a surface of a core of the microresonator where a field intensity of the first mode is greater than a field intensity of the second mode. The microresonator core has a first cladding at the first location. The microresonator also has a second location on a surface of the core of the microresonator where a field intensity of the first mode is less than or equal to a field intensity of the second mode, the microresonator core having a second cladding at the second location. The first cladding is different than the second cladding.
    • 光学传感系统及其使用方法包括光源和具有与光源光通信的输入端口的第一总线波导。 该系统还包括微谐振器,其被配置为使得光源至少激发微谐振器的第一和第二谐振引导光学模式。 微谐振器包括在微谐振器的芯的表面上的第一位置,其中第一模式的场强大于第二模式的场强度。 微谐振器芯在第一位置具有第一包层。 微谐振器还在微谐振器的芯的表面上具有第二位置,其中第一模式的场强小于或等于第二模式的场强度,微谐振器芯在第二位置具有第二包层。 第一包层与第二包层不同。
    • 9. 发明授权
    • Optical sensing methods
    • 光学感测方法
    • US07512298B2
    • 2009-03-31
    • US11565955
    • 2006-12-01
    • Yasha YiBarry J. KochTerry L. SmithChunmei Guo
    • Yasha YiBarry J. KochTerry L. SmithChunmei Guo
    • G02B6/26G01B9/02G01N21/00G01N21/47
    • G01N21/7746G02B6/12007
    • An optical sensing system and method is disclosed. In one embodiment, a method of detecting a scattering center includes the step of providing an optical sensing system including a light source, one or more bus waveguides where a first bus waveguide has an input port that is in optical communication with the light source, a microresonator optically coupled to the one or more bus waveguides, and a scattering center which is capable of optically coupling to the microresonator. The method further includes the steps of exciting at least a first resonant guided optical mode of the microresonator with the light source, altering a strength of optical coupling between the scattering center and the microresonator to induce a change in optical scattering between the first mode and at least a second guided optical mode of the microresonator, and detecting a change in transfer of energy from the first mode to the second mode.
    • 公开了一种光学传感系统和方法。 在一个实施例中,检测散射中心的方法包括提供包括光源,一个或多个总线波导的光学感测系统的步骤,其中第一总线波导具有与光源光学通信的输入端口, 光耦合到一个或多个总线波导的微谐振器以及能够光耦合到微谐振器的散射中心。 该方法还包括以下步骤:利用光源激发至少第一共振引导的微谐振引导光学模式,改变散射中心和微谐振器之间的光耦合的强度,以引起第一模式与第二模式之间的光散射变化 至少第二引导光学模式的微谐振器,以及检测能量从第一模式转移到第二模式的变化。