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    • 14. 发明授权
    • Electro-optical modulator
    • 电光调制器
    • US08295655B2
    • 2012-10-23
    • US12310431
    • 2007-08-24
    • Sasikanth ManipatruniQianfan XuMichal Lipson
    • Sasikanth ManipatruniQianfan XuMichal Lipson
    • G02F1/035
    • G02B6/12007G02B6/29343G02B6/4215G02F1/025G02F2203/15
    • An optical modulator includes a ring resonator with a waveguide adjacent to and optically coupled to the micro-ring resonator. A p-i-n junction is formed about the ring resonator. An optional additional doped region may be formed opposite the waveguide from the ring resonator and when combined with the p-i-n junction forms a nearly closed p-i-n junction about the ring resonator. The ring resonator may be a silicon micro-ring resonator. Multiple different resonant frequency resonators may be coupled to the waveguide along with different detectors to multiplex light on the waveguide. The spectrum of the resonator may be controlled by an applied voltage. A prepulsing device may be used to enhance electrical transitions to enhance the speed of the modulator.
    • 光调制器包括环形谐振器,其具有与微环谐振器相邻并且光耦合的微波环。 围绕环形谐振器形成p-i-n结。 可选的附加掺杂区域可以形成为与环形谐振器相对的波导,并且当与p-i-n结结合形成围绕环形谐振器的近似闭合的p-i-n结。 环形谐振器可以是硅微环谐振器。 多个不同的谐振频率谐振器可以与不同的检测器耦合到波导,以在波导上复用光。 谐振器的频谱可以通过施加的电压来控制。 可以使用预脉冲装置来增强电转换以提高调制器的速度。
    • 15. 发明申请
    • ELECTRO-OPTICAL MODULATOR
    • 电光调制器
    • US20100098372A1
    • 2010-04-22
    • US12310431
    • 2007-08-24
    • Sasikanth ManipatruniQianfan XuMichal Lipson
    • Sasikanth ManipatruniQianfan XuMichal Lipson
    • G02F1/025
    • G02B6/12007G02B6/29343G02B6/4215G02F1/025G02F2203/15
    • An optical modulator includes a ring resonator with a waveguide adjacent to and optically coupled to the micro-ring resonator. A p-i-n junction is formed about the ring resonator. An optional additional doped region may be formed opposite the waveguide from the ring resonator and when combined with the p-i-n junction forms a nearly closed p-i-n junction about the ring resonator. The ring resonator may be a silicon micro-ring resonator. Multiple different resonant frequency resonators may be coupled to the waveguide along with different detectors to multiplex light on the waveguide. The spectrum of the resonator may be controlled by an applied voltage. A prepulsing device may be used to enhance electrical transitions to enhance the speed of the modulator.
    • 光调制器包括环形谐振器,其具有与微环谐振器相邻并且光耦合的微波环。 围绕环形谐振器形成p-i-n结。 可选的附加掺杂区域可以形成为与环形谐振器相对的波导,并且当与p-i-n结结合形成围绕环形谐振器的近似闭合的p-i-n结。 环形谐振器可以是硅微环谐振器。 多个不同的谐振频率谐振器可以与不同的检测器耦合到波导,以在波导上复用光。 谐振器的频谱可以通过施加的电压来控制。 可以使用预脉冲装置来增强电转换以提高调制器的速度。
    • 20. 发明申请
    • IMAGING DEVICE AND METHOD
    • 成像装置和方法
    • US20140374576A2
    • 2014-12-25
    • US13497578
    • 2010-09-03
    • Ulf LeonhardtTomas TycLucas Heitzmann GabrielliMichal Lipson
    • Ulf LeonhardtTomas TycLucas Heitzmann GabrielliMichal Lipson
    • G01J1/04
    • G02B17/086G02B1/002G02B3/0087G02B27/58
    • The resolution of conventional imaging devices is restricted by the diffraction limit ‘Perfect’ imaging devices which can achieve a resolution beyond the diffraction limit have been considered impossible to implement. However, the present disclosure provides an imaging device which can achieve improved resolution beyond the diffraction limit and which can be implemented in practice. Said imaging device comprises: a. a lens having a refractive index that varies according to a predetermined refractive index profile; b. a source; c. an outlet for decoupling waves from the device; and d. a reflector provided around the lens, the source and the outlet, wherein the reflector and the refractive index profile of the lens are together arranged to direct waves transmitted in any of a plurality of directions from the source to the outlet.
    • 常规成像装置的分辨率受到衍射极限的限制,可以实现超出衍射极限的分辨率的“完美”成像装置被认为是不可能实现的。 然而,本公开提供了一种成像装置,其可以实现超出衍射极限的改进的分辨率,并且可以在实践中实现。 所述成像装置包括:a。 具有根据预定折射率分布变化的折射率的透镜; b。 来源; C。 用于将波从设备中去耦的出口; 和d。 设置在透镜周围的反射器,源和出口,其中反射器和透镜的折射率分布在一起布置成将从多个方向中的任一个方向传输的波引导到出射口。