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    • 1. 发明申请
    • Three dimensional semiconductor based optical switching device
    • 基于三维半导体的光开关器件
    • US20060083465A1
    • 2006-04-20
    • US10947633
    • 2004-09-22
    • Remus NicolaescuMario Paniccia
    • Remus NicolaescuMario Paniccia
    • G02B6/26H04B10/04H04B10/12
    • G02F1/025
    • A device with optical switching between multiple layers of a semiconductor die is disclosed. In one aspect of the present invention, the disclosed apparatus includes a first semiconductor material layer of a semiconductor die. The first semiconductor material layer has a first optical waveguide. A second semiconductor material layer is also included in the semiconductor die. The second semiconductor material layer has a second optical waveguide. An insulating layer is disposed between the first and second semiconductor material layers such that there is an evanescent coupling between the first and second semiconductor material layers. There are modulated charge layers proximate to the insulating layer such that a coupling length of the evanescent coupling is controlled in response to the modulated charge layers.
    • 公开了一种在半导体管芯的多层之间进行光切换的器件。 在本发明的一个方面,所公开的装置包括半导体管芯的第一半导体材料层。 第一半导体材料层具有第一光波导。 第二半导体材料层也包括在半导体管芯中。 第二半导体材料层具有第二光波导。 绝缘层设置在第一和第二半导体材料层之间,使得在第一和第二半导体材料层之间存在ev逝耦合。 存在靠近绝缘层的调制电荷层,使得响应于调制的电荷层来控制ev逝耦合的耦合长度。
    • 2. 发明申请
    • Method and apparatus for Raman ring resonator based laser/wavelength converter
    • 用于拉曼环谐振器的激光/波长转换器的方法和装置
    • US20050053111A1
    • 2005-03-10
    • US10659009
    • 2003-09-10
    • Remus NicolaescuMario Paniccia
    • Remus NicolaescuMario Paniccia
    • G02B6/12H01S3/00H01S3/083H01S3/0941H01S3/30
    • H01S3/0941G02B6/12004H01S3/005H01S3/083H01S3/30
    • A Raman ring resonator based laser and wavelength converter method and apparatus. In one aspect of the present invention, the disclosed method includes directing a first optical beam of a first wavelength and a first power level into a first ring resonator defined in a semiconductor material. Emission of a second optical beam of a second wavelength is caused in the first ring resonator by propagating the first optical beam around the first ring resonator. The first power level is sufficient to cause the emission of the second optical beam. The first optical beam is directed out of the first ring resonator after a round trip of the first optical beam around the first ring resonator. The second optical beam is recirculated around the first ring resonator to further stimulate the emission of the second optical beam in the first ring resonator.
    • 一种拉曼环形谐振器的激光和波长转换器的方法和装置。 在本发明的一个方面,所公开的方法包括将第一波长和第一功率电平的第一光束引导到限定在半导体材料中的第一环形谐振器中。 通过在第一环形谐振器周围传播第一光束,在第一环形谐振器中产生第二波长的第二光束的发射。 第一功率电平足以引起第二光束的发射。 在第一光束围绕第一环形谐振器的往返之后,第一光束被引导出第一环形谐振器。 第二光束围绕第一环形谐振器再循环,以进一步刺激第一环形谐振器中的第二光束的发射。
    • 6. 发明申请
    • Method and apparatus for isolating an active region in an optical waveguide
    • 用于隔离光波导中的有源区的方法和装置
    • US20050123260A1
    • 2005-06-09
    • US10731559
    • 2003-12-09
    • Ansheng LiuMario Paniccia
    • Ansheng LiuMario Paniccia
    • G02F1/025G02B6/10G02F1/035
    • G02F1/025G02F2201/063
    • An apparatus and method for modulating a phase of optical beam in an electrically isolated active region of an optical waveguide. In one embodiment, an apparatus according to embodiments of the present invention includes an active region of an optical waveguide disposed in a semiconductor layer. The active region includes a p doped region and an n doped region. The apparatus further includes an insulating region disposed in the semiconductor layer surrounding the active region in the semiconductor layer. The insulating region electrically isolates the active region of the optical waveguide from a passive region of the optical waveguide disposed in the semiconductor layer. An optical beam is to be directed through the optical waveguide and through the active region to be phase shifted in response to a modulated charge region in the active region in the optical waveguide.
    • 一种用于调制光波导的电隔离有源区中的光束相位的装置和方法。 在一个实施例中,根据本发明的实施例的装置包括设置在半导体层中的光波导的有源区。 有源区包括p掺杂区和n掺杂区。 该装置还包括设置在半导体层中的绝缘区域,该半导体层围绕半导体层中的有源区域。 绝缘区域将光波导的有源区域与设置在半导体层中的光波导的无源区域电隔离。 光束将被引导通过光波导并且通过有源区域响应于光波导中的有源区域中的调制的电荷区域被相移。