Loss engineering to improve system functionality and output

    公开(公告)号:US11131619B2

    公开(公告)日:2021-09-28

    申请号:US15981228

    申请日:2018-05-16

    IPC分类号: G01N15/14 G01N21/77 G01N21/65

    摘要: A system and method for engineering loss in a physical system by steering parameters of the physical system to the vicinity of an exceptional point is disclosed. In the vicinity of an exceptional point, localization of the fields helps to enhance any linear or nonlinear processes. As examples loss-induced transparency in the intracavity field intensities of coupled resonators, loss-induced suppression and enhancement of thermal nonlinearity in coupled resonators and loss-induced suppression and revival of Raman lasing in whispering-gallery-microcavities are demonstrated.

    METHOD AND SYSTEM FOR PARITY-TIME SYMMETRIC OPTICS AND NONRECIPROCAL LIGHT TRANSMISSION
    3.
    发明申请

    公开(公告)号:US20150295379A1

    公开(公告)日:2015-10-15

    申请号:US14685335

    申请日:2015-04-13

    IPC分类号: H01S3/06 H01S3/10

    摘要: A method and system for optical systems based on parity-time symmetry and its breaking, and for nonreciprocal light transmission in a parity-time symmetric micro-resonator system are provided. The system includes an optical assembly that includes a first dissipative optical system and a second optical system coupled in energy transfer communication with the first optical system. The second optical system is configured to receive a continuous flow of energy from an external source and to transfer energy to the first optical system through the couple wherein the energy transferred to the first optical system from the second optical system is approximately equal to the energy dissipated in the first optical system, where the energy transferred to the first optical system from the second optical system is selectable using at least one of an amount of couple between the first optical system and the second optical system and a gain of the second optical system.

    摘要翻译: 提供了一种基于奇偶校验 - 时间对称性及其断开的光学系统的方法和系统,以及用于奇偶校验 - 时间对称微谐振器系统中的非互易光传输的方法和系统。 该系统包括光学组件,其包括第一耗散光学系统和与第一光学系统的能量传递通信耦合的第二光学系统。 第二光学系统被配置为从外部源接收持续的能量流并且通过耦合将能量传递到第一光学系统,其中从第二光学系统传送到第一光学系统的能量近似等于所耗散的能量 在第一光学系统中,使用第一光学系统和第二光学系统之间的耦合量和第二光学系统的增益中的至少一个可选择从第二光学系统传送到第一光学系统的能量。

    LOSS ENGINEERING TO IMPROVE SYSTEM FUNCTIONALITY AND OUTPUT

    公开(公告)号:US20180306696A1

    公开(公告)日:2018-10-25

    申请号:US15981228

    申请日:2018-05-16

    IPC分类号: G01N15/14

    摘要: A system and method for engineering loss in a physical system by steering parameters of the physical system to the vicinity of an exceptional point is disclosed. In the vicinity of an exceptional point, localization of the fields helps to enhance any linear or nonlinear processes. As examples loss-induced transparency in the intracavity field intensities of coupled resonators, loss-induced suppression and enhancement of thermal nonlinearity in coupled resonators and loss-induced suppression and revival of Raman lasing in whispering-gallery-microcavities are demonstrated.

    DETECTION OF NANO-SCALE PARTICLES WITH A SELF-REFERENCED AND SELF-HETERODYNED RAMAN MICRO-LASER
    9.
    发明申请
    DETECTION OF NANO-SCALE PARTICLES WITH A SELF-REFERENCED AND SELF-HETERODYNED RAMAN MICRO-LASER 审中-公开
    用自动和自异性拉曼光学激光器检测纳米鳞片状颗粒

    公开(公告)号:US20150285728A1

    公开(公告)日:2015-10-08

    申请号:US14659427

    申请日:2015-03-16

    IPC分类号: G01N15/14 G01N21/65

    摘要: A system and method for is a micro-laser based nano-scale object detection system and method using frequency shift and/or mode splitting techniques. The system and method can provide highly sensitive detection of nanoparticles with a self-referenced and self-heterodyned whispering-gallery Raman micro-laser. The system and method also provides for nano-particle size measurement.

    摘要翻译: 一种用于基于微激光的纳米尺度物体检测系统和方法的系统和方法,该系统和方法使用频移和/或模式分割技术。 该系统和方法可以提供具有自参考和自我外差的耳语拉曼微型激光器的纳米颗粒的高灵敏度检测。 该系统和方法还提供纳米粒度测量。