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    • 1. 发明授权
    • Electronic-integration compatible photonic integrated circuit and method for fabricating electronic-integration compatible photonic integrated circuit
    • 电子集成兼容光子集成电路和制造电子集成兼容光子集成电路的方法
    • US08213751B1
    • 2012-07-03
    • US12626178
    • 2009-11-25
    • Seng-Tiong HoYingyan Huang
    • Seng-Tiong HoYingyan Huang
    • G02B6/00H01L21/00
    • G02B6/43G02B6/305
    • An electronic-integration compatible photonic integrated circuit (EIC-PIC) for achieving high-performance computing and signal processing is provided. The electronic-integration compatible photonic integrated circuit comprises a plurality of electronic circuit structures and a plurality of photonic circuit structures. The electronic and photonic circuit structures are integrated by a process referred to as monolithic integration. An electronic circuit structure includes one or more electronic devices and a photonic circuit structure includes one or more photonic devices. The integration steps of electronic and photonic devices are further inserted into standard CMOS process. The photonic circuit structures and the electronic circuit structures are integrated to form the electronic-integration compatible photonic integrated circuit device.
    • 提供了一种用于实现高性能计算和信号处理的电子集成兼容光子集成电路(EIC-PIC)。 电子集成兼容光子集成电路包括多个电子电路结构和多个光子电路结构。 电子和光子电路结构通过被称为单片集成的过程来集成。 电子电路结构包括一个或多个电子器件,并且光子电路结构包括一个或多个光子器件。 电子和光子器件的集成步骤进一步插入到标准CMOS工艺中。 光子电路结构和电子电路结构被集成以形成电子集成兼容光子集成电路器件。
    • 2. 发明授权
    • Curved grating spectrometer with very high wavelength resolution
    • 弯曲光栅光谱仪具有非常高的波长分辨率
    • US07623235B2
    • 2009-11-24
    • US11872455
    • 2007-10-15
    • Seng-Tiong HoSeongsik ChangYingyan Huang
    • Seng-Tiong HoSeongsik ChangYingyan Huang
    • G01J3/28
    • G01J3/20G01J3/22
    • The present application discloses a system comprising a compact curved grating (CCG) and its associated compact curved grating spectrometer (CCGS) or compact curved grating wavelength multiplexer/demultiplexer (WMDM) module and a method for making the same. The system is capable of achieving a very small (resolution vs. size) RS factor. In the invention, the location of the entrance slit and detector can be adjusted in order to have the best performance for a particular design goal. The initial groove spacing is calculated using a prescribed formula dependent on operation wavelength. The location of the grooves is calculated based on two conditions. The first one being that the path-difference between adjacent grooves should be an integral multiple of the wavelength in the medium to achieve aberration-free grating focusing at the detector or output slit (or output waveguide) even with large beam diffraction angle from the entrance slit or input slit (or input waveguide). The second one being specific for a particular design goal of a curved-grating spectrometer. In an embodiment, elliptical mirrors each with focal points at the slit and detector are used for each groove to obtain aberration-free curved mirrors.
    • 本申请公开了一种包括紧凑弯曲光栅(CCG)及其相关联的紧凑弯曲光栅光谱仪(CCGS)或紧凑弯曲光栅波长多路复用器/解复用器(WMDM)模块的系统及其制造方法。 该系统能够实现非常小的(分辨率vs.尺寸)RS因子。 在本发明中,可以调整入口狭缝和检测器的位置,以便为特定设计目标具有最佳性能。 使用取决于工作波长的规定公式计算初始槽间距。 基于两个条件计算凹槽的位置。 第一个是相邻槽之间的路径差应该是介质中的波长的整数倍,以便即使在入口处具有大的光束衍射角,也可以在检测器或输出狭缝(或输出波导)处聚焦的无像差光栅 狭缝或输入狭缝(或输入波导)。 第二个特定于曲面光栅光谱仪的特定设计目标。 在一个实施例中,每个具有狭缝和检测器处的​​焦点的椭圆镜用于每个凹槽,以获得无像差的曲面镜。
    • 7. 发明授权
    • Curved grating spectrometer and wavelength multiplexer or demultiplexer with very high wavelength resolution
    • 弯曲光栅光谱仪和具有非常高波长分辨率的波长多路复用器或解复用器
    • US08462338B1
    • 2013-06-11
    • US12623750
    • 2009-11-23
    • Seng-Tiong HoYingyan Huang
    • Seng-Tiong HoYingyan Huang
    • G01J3/28
    • H04B10/07G01J3/0256G01J3/20G01J3/22G02B6/29326G02B6/29328
    • The present application discloses a system comprising a compact curved grating (CCG) and its associated compact curved grating spectrometer (CCGS) or compact curved grating wavelength multiplexer/demultiplexer (WMDM) module and a method for making the same. The system is capable of achieving a very small (resolution vs. size) RS factor. In the invention, the location of the entrance slit and detector can be adjusted in order to have the best performance for a particular design goal. The initial groove spacing is calculated using a prescribed formula dependent on operation wavelength. The location of the grooves is calculated based on two conditions. The first one being that the path-difference between adjacent grooves should be an integral multiple of the wavelength in the medium to achieve aberration-free grating focusing at the detector or output slit (or output waveguide) even with large beam diffraction angle from the entrance slit or input slit (or input waveguide). The second one being specific for a particular design goal of a curved-grating spectrometer. In an embodiment, elliptical mirrors each with focal points at the slit and detector are used for each groove to obtain aberration-free curved mirrors.
    • 本申请公开了一种包括紧凑弯曲光栅(CCG)及其相关联的紧凑弯曲光栅光谱仪(CCGS)或紧凑弯曲光栅波长多路复用器/解复用器(WMDM)模块的系统及其制造方法。 该系统能够实现非常小的(分辨率vs.尺寸)RS因子。 在本发明中,可以调整入口狭缝和检测器的位置,以便为特定设计目标具有最佳性能。 使用取决于工作波长的规定公式计算初始槽间距。 基于两个条件计算凹槽的位置。 第一个是相邻槽之间的路径差应该是介质中波长的整数倍,以便即使在入口处具有较大的光束衍射角,也可以在检测器或输出狭缝(或输出波导)处聚焦的无像差光栅 狭缝或输入狭缝(或输入波导)。 第二个特定于曲面光栅光谱仪的特定设计目标。 在一个实施例中,每个具有狭缝和检测器处的​​焦点的椭圆镜用于每个凹槽,以获得无像差的曲面镜。