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    • 1. 发明申请
    • SLOW-LIGHT SILICON OPTICAL MODULATOR
    • 慢光硅光学调制器
    • US20170038609A1
    • 2017-02-09
    • US14794457
    • 2015-07-08
    • ORACLE INTERNATIONAL CORPORATION
    • Ying L. LuoShiyun LinXuezhe ZhengAshok V. Krishnamoorthy
    • G02F1/025G02F1/01G02F1/225
    • G02F1/025G02F1/0123G02F1/2255G02F2001/0151G02F2001/212G02F2202/32
    • An optical modulator is described. This optical modulator may be implemented using silicon-on-insulator (SOI) technology. In particular, a semiconductor layer in an SOI platform may include a photonic crystal having a group velocity of light that is less than that of the semiconductor layer. Moreover, an optical modulator (such as a Mach-Zehnder interferometer) may be implemented in the photonic crystal with a vertical junction in the semiconductor layer. During operation of the optical modulator, an input optical signal may be split into two different optical signals that feed two optical waveguides, and then subsequently combined into an output optical signal. Furthermore, during operation, time-varying bias voltages may be applied across the vertical junction in the optical modulator using contacts defined along a lateral direction of the optical modulator.
    • 描述了光调制器。 该光调制器可以使用绝缘体上硅(SOI)技术来实现。 特别地,SOI平台中的半导体层可以包括具有小于半导体层的光的组光速的光子晶体。 此外,可以在半导体层中具有垂直结的光子晶体中实现光调制器(诸如马赫 - 曾德干涉仪)。 在光调制器的操作期间,输入光信号可以被分成两个不同的光信号,其馈送两个光波导,然后被组合成输出光信号。 此外,在操作期间,可以使用沿着光学调制器的横向方向限定的触点在光调制器中的垂直结上施加时变偏置电压。
    • 2. 发明授权
    • Wavelength-locking a ring-resonator filter
    • 波长锁定环形谐振器滤波器
    • US09310562B2
    • 2016-04-12
    • US14203876
    • 2014-03-11
    • Oracle International Corporation
    • Xuezhe ZhengGuoliang LiYing L. LuoAshok V. Krishnamoorthy
    • G02B6/26G02B6/293H04J14/00G02B6/28
    • G02B6/29341G02B6/2852G02F1/3132H04J14/00
    • In an optical device, a ring resonator, having a resonance wavelength, optically couples an optical signal that includes a wavelength from an input optical waveguide to an output optical waveguide. A monitoring mechanism in the optical device, which is optically coupled to the output optical waveguide, monitors an output optical signal on the output optical waveguide. For example, the monitoring mechanism may dither a temperature of the ring resonator at a frequency using a heater, and the output optical signal may be monitored by determining amplitude and phase information of the output optical signal at the frequency and twice the frequency. Moreover, control logic in the optical device adjusts the resonance wavelength based on the monitored output optical signal, where the adjustment is made without monitoring an input optical signal on the input optical waveguide.
    • 在光学装置中,具有谐振波长的环形谐振器将包括来自输入光波导的波长的光信号光耦合到输出光波导。 光学装置中的光耦合到输出光波导的监视机构监视输出光波导上的输出光信号。 例如,监视机构可以使用加热器将环形谐振器的温度以一定的频率进行抖动,并且可以通过确定频率和频率两倍的输出光信号的幅度和相位信息来监视输出光信号。 此外,光学装置中的控制逻辑基于所监视的输出光信号来调节谐振波长,其中在不监视输入光波导上的输入光信号的情况下进行调整。
    • 6. 发明申请
    • TRANSCEIVER WITH SELF-REGISTERED WAVELENGTHS
    • 具有自我注册波长的收发器
    • US20140169737A1
    • 2014-06-19
    • US13717359
    • 2012-12-17
    • ORACLE INTERNATIONAL CORPORATION
    • Xuezhe ZhengYing L. LuoAshok V. Krishnamoorthy
    • G02B6/34
    • G02B6/4215G02B6/12007G02B6/29308G02B6/2938G02B6/29395G02B2006/12107H04Q2213/1301
    • An integrated optical component outputs and receives an optical signal that provides a comb of modulated wavelengths for use in wavelength-division-multiplexing (WDM) optical interconnects or links. In particular, a shared echelle grating is used as a wavelength-selective filter or control device for multiple lasing cavities to achieve self-registered and accurate lasing-channel spacing without inter-channel gain competition for multiplexing modulated wavelength channels into one transmit port, and for receiving and de-multiplexing WDM wavelength channels simultaneously. The wavelength alignment between a pair of such transceivers can be achieved by tuning the echelle grating on one side using thermal-optical or electro-optical effects. Furthermore, tunable ring-resonator modulators, broadband electro-absorption modulators (EAMs) or Mach-Zehnder Interferometer (MZI) optical modulators on the shared output waveguide outside of the lasing cavities can be used to modulate the wavelengths. The optical component can be used to provide all the wavelength channels in one optical waveguide.
    • 集成光学部件输出并接收提供用于波分复用(WDM)光互连或链路的调制波长梳的光信号。 特别地,共享光圈光栅被用作用于多个激光腔的波长选择滤波器或控制装置,以实现自注册和精确的激光信道间隔,而不需要将调制波长信道复用到一个发射端口中的信道间增益竞争,以及 用于同时接收和解复用WDM波长信道。 一对这样的收发器之间的波长对准可以通过使用热光学或电光效应来调谐一侧的电子组件光栅来实现。 此外,可以使用在激光腔外部的共享输出波导上的可调谐环形谐振器调制器,宽带电吸收调制器(EAM)或马赫 - 曾德干涉仪(MZI)光调制器来调制波长。 光学部件可用于在一个光波导中提供所有波长通道。