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    • 1. 发明授权
    • Nano-optomechanical transducer
    • 纳米光机械传感器
    • US08600200B1
    • 2013-12-03
    • US13076228
    • 2011-03-30
    • Peter T. RakichIhab F. El-KadyRoy H. OlssonMehmet Fatih SuCharles ReinkeRyan CamachoZheng WangPaul Davids
    • Peter T. RakichIhab F. El-KadyRoy H. OlssonMehmet Fatih SuCharles ReinkeRyan CamachoZheng WangPaul Davids
    • G02F1/335G02F1/01
    • G02F1/0126G02F1/125
    • A nano-optomechanical transducer provides ultrabroadband coherent optomechanical transduction based on Mach-wave emission that uses enhanced photon-phonon coupling efficiencies by low impedance effective phononic medium, both electrostriction and radiation pressure to boost and tailor optomechanical forces, and highly dispersive electromagnetic modes that amplify both electrostriction and radiation pressure. The optomechanical transducer provides a large operating bandwidth and high efficiency while simultaneously having a small size and minimal power consumption, enabling a host of transformative phonon and signal processing capabilities. These capabilities include optomechanical transduction via pulsed phonon emission and up-conversion, broadband stimulated phonon emission and amplification, picosecond pulsed phonon lasers, broadband phononic modulators, and ultrahigh bandwidth true time delay and signal processing technologies.
    • 纳米光学机械传感器提供基于马赫波发射的超宽带相干光学机械转导,其通过低阻抗有效声子介质增强光子 - 声子耦合效率,电致伸缩和辐射压力以增强和定制机械力,以及放大的高分散电磁模式 电抑制和辐射压力。 光学机械传感器提供了大的工作带宽和高效率,同时具有小尺寸和最小的功耗,实现了大量的变换声子和信号处理能力。 这些功能包括通过脉冲声子发射和上转换,宽带刺激的声子发射和放大,皮秒脉冲声子激光器,宽带声子调制器和超高带宽真实时间延迟和信号处理技术的光学机械转导。
    • 2. 发明授权
    • Frequency selective infrared sensors
    • 频率选择红外传感器
    • US08452134B1
    • 2013-05-28
    • US12871334
    • 2010-08-30
    • Paul DavidsDavid W. Peters
    • Paul DavidsDavid W. Peters
    • G02B6/00
    • G01J5/58G01J1/0488G01J1/42G01J5/0853G01J5/0862H01L27/14652H01L31/1085
    • A frequency selective infrared (IR) photodetector having a predetermined frequency band. The exemplary frequency selective photodetector includes: a dielectric IR absorber having a first surface and a second surface substantially parallel to the first surface; an electrode electrically coupled to the first surface of the dielectric IR absorber; and a frequency selective surface plasmonic (FSSP) structure formed on the second surface of the dielectric IR absorber. The FSSP structure is designed to selectively transmit radiation in the predetermined frequency band that is incident on the FSSP structure substantially independent of the angle of incidence of the incident radiation on the FSSP structure.
    • 具有预定频带的频率选择性红外(IR)光电探测器。 示例性频率选择性光电检测器包括:介电IR吸收体,其具有基本平行于第一表面的第一表面和第二表面; 电耦合到介电IR吸收体的第一表面的电极; 以及形成在介电IR吸收体的第二表面上的频率选择性表面等离子体(FSSP)结构。 FSSP结构被设计成选择性地发射入射在FSSP结构上的预定频带中的辐射,基本上与FSSP结构上的入射辐射的入射角无关。
    • 7. 发明授权
    • Package to die optical coupler having high coupling efficiency and alignment tolerance
    • 封装到具有高耦合效率和对准公差的光耦合器
    • US06888990B2
    • 2005-05-03
    • US10606322
    • 2003-06-24
    • Bruce A. BlockBrandon BarnettPaul Davids
    • Bruce A. BlockBrandon BarnettPaul Davids
    • G02B6/12G02B6/125G02B6/00G02B6/26G02B6/36
    • G02B6/12002G02B6/125
    • In an embodiment of the invention, an optical coupler couples light unidirectionally from integrated circuit package to an integrated circuit die. The package has a large waveguide with a waveguide core that has a low index of refraction. The die has a set of very small waveguide cores that have a high index of refraction relative to the index of refraction of the large waveguide core on the package. The waveguide cores with high index of refraction attract light from the waveguide core with the low index of refraction. No light is coupled back into the large waveguide core. Also, the optical mode of the large waveguide on the package is smaller than a subset of waveguide cores on the die. Thus, light is coupled from the package to the die without the waveguide cores having to be tightly aligned with each other.
    • 在本发明的一个实施例中,光耦合器将光从集成电路封装单向耦合到集成电路管芯。 该封装具有具有低折射率的波导芯的大波导管。 芯片具有一组非常小的波导芯,其相对于封装上的大波导芯的折射率具有高的折射率。 具有高折射率的波导芯以较低的折射率吸引来自波导芯的光。 没有光耦合回大波导芯。 此外,封装上的大波导的光学模式小于管芯上的波导芯的子集。 因此,光从封装耦合到裸片,而波导芯必须彼此紧密对准。