OPTICAL DEVICES AND METHODS OF FABRICATING THE SAME
    3.
    发明申请
    OPTICAL DEVICES AND METHODS OF FABRICATING THE SAME 有权
    光学装置及其制造方法

    公开(公告)号:US20140302623A1

    公开(公告)日:2014-10-09

    申请号:US14311372

    申请日:2014-06-23

    Abstract: Provided is an optical device. The optical device includes a substrate having a waveguide region and a mounting region, a planar lightwave circuit (PLC) waveguide including a lower-clad layer d an upper-clad layer on the waveguide region of the substrate and a platform core between the lower-clad layer and the upper-clad layer, a terrace defined by etching the lower-clad layer on the mounting region of the substrate, the terrace including an interlocking part, an optical active chip mounted on the mounting region of the substrate, the optical active chip including a chip core therein, and a chip alignment mark disposed on a mounting surface of the optical active chip. The optical active chip is aligned by interlocking between the interlocking part of the terrace and the chip alignment mark of the optical active chip and mounted on the mounting region.

    Abstract translation: 提供了一种光学装置。 光学装置包括具有波导区域和安装区域的基板,在基板的波导区域上包括下包层d的上包层的平面光波电路(PLC)波导, 包覆层和上包层,通过蚀刻衬底的安装区域上的下包覆层限定的平台,所述露台包括互锁部分,安装在衬底的安装区域上的光学有源芯片,光学活动 芯片,其中包括芯片芯片,以及设置在光学有源芯片的安装表面上的芯片对准标记。 光学有源芯片通过在平台的互锁部分和光学有源芯片的芯片对准标记之间的互锁对准并且安装在安装区域上。

    APPARATUS FOR GENERATING/DETECTING TERAHERTZ WAVE USING GRAPHENE AND MANUFACTURING METHOD OF THE SAME
    4.
    发明申请
    APPARATUS FOR GENERATING/DETECTING TERAHERTZ WAVE USING GRAPHENE AND MANUFACTURING METHOD OF THE SAME 有权
    用于生成/检测使用石墨和其制造方法的TERAHERTZ波的装置

    公开(公告)号:US20140183441A1

    公开(公告)日:2014-07-03

    申请号:US14063361

    申请日:2013-10-25

    CPC classification number: H01L31/028 H01L31/085

    Abstract: Provided is a terahertz wave generating/detecting apparatus and a method for manufacturing the same. The terahertz wave generating/detecting apparatus includes; a substrate having an active region and a transmitting region; a lower metal layer extending in a first direction on the active region and the transmitting region of the substrate; a graphene layer disposed on the lower metal layer on the active region; and upper metal layers extending in the first direction on the graphene layer of the active region and the substrate in the transmission region, wherein a terahertz wave is generated or amplified by a surface plasmon polariton that is induced on a boundary surface between the graphene layer and the lower metal layer by beated laser light applied to the graphene layer and the metal layer.

    Abstract translation: 提供一种太赫兹波发生/检测装置及其制造方法。 太赫兹波发生/检测装置包括: 具有有源区和发射区的衬底; 在所述有源区域和所述基板的透射区域上沿第一方向延伸的下金属层; 设置在有源区上的下金属层上的石墨烯层; 以及在有源区域的石墨烯层和透射区域中的衬底的第一方向上延伸的上金属层,其中通过在石墨烯层和石墨烯层之间的边界表面上诱导的表面等离子体激元产生或放大太赫兹波 通过施加到石墨烯层和金属层上的激光的下部金属层。

    TERAHERTZ WAVE GENERATING MODULE AND TERAHERTZ WAVE DETECTING DEVICE INCLUDING THE SAME
    5.
    发明申请
    TERAHERTZ WAVE GENERATING MODULE AND TERAHERTZ WAVE DETECTING DEVICE INCLUDING THE SAME 有权
    TERAHERTZ波形发生模块和包括其的TERAHERTZ波检测装置

    公开(公告)号:US20140166881A1

    公开(公告)日:2014-06-19

    申请号:US14049059

    申请日:2013-10-08

    CPC classification number: G01N21/3581

    Abstract: A terahertz wave generating module includes a bidirectional light source which provides a first dual-mode beam in a first direction and a second dual-mode beam in a second direction; a forward lens unit which focuses the first dual-mode beam; a photomixer unit which converts the first dual-mode beam focused by the forward lens unit into a terahertz wave; a backward lens unit which focuses the second dual-mode beam; and a light output unit which uses the second dual-mode beam focused by the backward lens unit as a light signal, wherein the bidirectional light source, the forward lens unit, the photomixer unit, the backward lens unit, and the light output unit are integrated in a housing.

    Abstract translation: 太赫兹波发生模块包括双向光源,其在第一方向上提供第一双模光束,而在第二方向上提供第二双模光束; 聚焦第一双模光束的前透镜单元; 将由前向透镜单元聚焦的第一双模光束转换为太赫兹波的光混合器单元; 聚焦第二双模光束的反向透镜单元; 以及使用由后向透镜单元聚焦的第二双模光束作为光信号的光输出单元,其中双向光源,前透镜单元,光混合器单元,后透镜单元和光输出单元是 融入住房。

    INTERCONNECTION APPARATUS AND METHOD USING TERAHERTZ WAVES
    7.
    发明申请
    INTERCONNECTION APPARATUS AND METHOD USING TERAHERTZ WAVES 有权
    互连装置和使用TERAHERTZ波形的方法

    公开(公告)号:US20130320215A1

    公开(公告)日:2013-12-05

    申请号:US13907582

    申请日:2013-05-31

    CPC classification number: H04B10/801 H04B10/90

    Abstract: Disclosed herein is an interconnection apparatus and method using terahertz waves. The interconnection apparatus using terahertz waves according to the present invention includes a first terahertz wave generation unit for generating a first transmission terahertz wave, a center frequency of which is a first center frequency, using photomixing. A second terahertz wave generation unit generates a second transmission terahertz wave, a center frequency of which is a second center frequency different from the first center frequency. A first terahertz wave detection unit detects a first reception terahertz wave corresponding to the first transmission terahertz wave. A second terahertz wave detection unit detects a second reception terahertz wave corresponding to the second transmission terahertz wave.

    Abstract translation: 这里公开了使用太赫兹波的互连装置和方法。 根据本发明的使用太赫兹波的互连装置包括:第一太赫兹波产生单元,用于使用光混合产生中心频率为第一中心频率的第一透射太赫兹波。 第二太赫波生成单元生成第二传输太赫兹波,其中心频率是与第一中心频率不同的第二中心频率。 第一太赫兹波检测单元检测对应于第一传输太赫兹波的第一接收太赫兹波。 第二太赫兹波检测单元检测对应于第二传输太赫兹波的第二接收太赫兹波。

    APPARATUS AND METHOD FOR SHAPING OPTICAL WAVEFORM

    公开(公告)号:US20200183084A1

    公开(公告)日:2020-06-11

    申请号:US16704931

    申请日:2019-12-05

    Abstract: Provided are an optical waveform shaping apparatus and an optical waveform shaping method. According to an embodiment, the optical waveform shaping apparatus includes a multiplexer/demultiplexer(D/MUX) unit demultiplexing an optical signal in which optical signals of a plurality of wavelengths are multiplexed, a micro lens system refracting the demultiplexed optical signal into a collimated beam of light, and a wavelength level controller unit shaping a waveform of the optical signal. The wavelength level controller unit includes a 2D LCoS for adjusting and reflecting an amplitude or a phase value of the demultiplexed optical signal to have a distribution that is desired for each cell, and a controller for controlling the distribution.

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