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    • 61. 发明申请
    • SPACE DIVERSITY OPTICAL RECEIVER AND SYSTEM AND METHOD USING THE SAME
    • 空间多样性光接收机及其系统及方法
    • US20090185811A1
    • 2009-07-23
    • US12389803
    • 2009-02-20
    • Pak Shing ChoJacob KhurginIsaac Shpantzer
    • Pak Shing ChoJacob KhurginIsaac Shpantzer
    • H04B10/06G01J1/10G02B6/26
    • H04B10/61
    • An optical beam combiner is provided, which allows efficient collection of light for various applications: non-line of sight and free space optical communications, remote sensing, optical imaging and others. A multitude of optical beam portions is captured by a space diversity receiver that includes an optical beam combiner, which has a tree-like topology with interconnected waveguides, electro-optic phase shifters, and directional couplers. For each of the beam portions the phase of the phase shifter and the coupling ratio of coupler in the optical beam combiner are tuned sequentially to maximize the final output power in the final optical waveguide. A portion of the final output beam is used for the power detection and forming a feedback signal for the phases and coupling ratios adjustment. The data or information is recovered from the received final optical beam using coherent detection.
    • 提供了一种光束组合器,其可以有效地收集用于各种应用的光:非视距和自由空间光通信,遥感,光学成像等。 多个光束部分由包括光束组合器的空间分集接收器捕获,光束组合器具有带有互连波导的树状拓扑结构,电光移相器和定向耦合器。 对于每个光束部分,顺序地调整移相器的相位和光束组合器中的耦合器的耦合比,以最大化最终光波导中的最终输出功率。 最终输出光束的一部分用于功率检测并形成用于相位和耦合比调节的反馈信号。 使用相干检测从所接收的最终光束中恢复数据或信息。
    • 62. 发明申请
    • COHERENT OPTICAL DETECTOR AND COHERENT COMMUNICATION SYSTEM AND METHOD
    • 相关光学检测器和相关通信系统及方法
    • US20090142051A1
    • 2009-06-04
    • US11938655
    • 2007-11-12
    • Isaac ShpantzerAviv SalamonArkady KaplanPak Shing ChoJacob KhurginYaakov AchiamArthur GreenblattGeofrey Harston
    • Isaac ShpantzerAviv SalamonArkady KaplanPak Shing ChoJacob KhurginYaakov AchiamArthur GreenblattGeofrey Harston
    • H04B10/08G02B6/26G02B6/12H04B10/06
    • H04B10/50G02B6/12004G02B6/12007G02B2006/12147H04B10/60H04B10/61H04B10/613H04B10/614H04B10/6162H04B10/63H04J14/005H04J14/02
    • An optical device is provided with first and second inputs. A first coupler coupled is coupled to the first input and produces at least a first and second output. A second coupler is coupled to the second input and produces at least a first and second output. A third coupler is coupled to the first output of the first coupler and to the first output of the second coupler. A fourth coupler is coupled to the second output of the first coupler and to the second output of the second coupler. First and second crossing waveguides are provided with an angle selected to minimize crosstalk and losses between the first and second cross waveguides. The first crossing waveguide connects one of the first or second outputs from the first coupler with an input of the fourth coupler. The second crossing waveguide connects one of the first or second outputs from the second coupler with an input of the third coupler. A first phase shifter is coupled to the first and second waveguides. The first and second waveguides connect one of the outputs of the first or second coupler and one of the inputs of the third or fourth couplers. The first, second, third and fourth couplers, the two crossing waveguides and the phase shifter are each formed as part of a single planar chip made of an electro-optical material.
    • 光学装置设置有第一和第二输入。 耦合的第一耦合耦合到第一输入并且产生至少第一和第二输出。 第二耦合器耦合到第二输入并且产生至少第一和第二输出。 第三耦合器耦合到第一耦合器的第一输出端和第二耦合器的第一输出端。 第四耦合器耦合到第一耦合器的第二输出端和第二耦合器的第二输出端。 第一和第二交叉波导具有被选择的角度,以最小化第一和第二交叉波导之间的串扰和损耗。 第一交叉波导将来自第一耦合器的第一或第二输出中的一个与第四耦合器的输入连接。 第二交叉波导将来自第二耦合器的第一或第二输出中的一个与第三耦合器的输入连接。 第一移相器耦合到第一和第二波导。 第一和第二波导连接第一或第二耦合器的输出之一和第三或第四耦合器的输入之一。 第一,第二,第三和第四耦合器,两个交叉波导和移相器各自形成为由电光材料制成的单个平面芯片的一部分。
    • 63. 发明授权
    • Integrated coherent optical detector
    • 集成相干光检测器
    • US07483600B2
    • 2009-01-27
    • US11672372
    • 2007-02-07
    • Yaakov AchiamIsaac ShpantzerArthur GreenblattGeoffrey HarstonArkady KaplanPak Shing Cho
    • Yaakov AchiamIsaac ShpantzerArthur GreenblattGeoffrey HarstonArkady KaplanPak Shing Cho
    • G02B6/12
    • G02B6/4225
    • The present invention provides an integrated device and a method of its fabrication and use. Two parts of the device each having an electronic circuit are aligned adjacent to each other with an accuracy of at least 1 micron. An alignment system includes two parts: a first part integrated with the first electronic circuit of the integrated device on the first substrate and a second part integrated with the second electronic circuit of the integrated device on the second substrate. The second part of alignment system includes at least one photodiode. The maximal value of the photodiode current indicates the best alignment of two parts of the integrated device. In one embodiment the integrated device is a coherent optical detector for high speed optical communications and chemical sensing. In another embodiment the integrated optical device is a coherent optical detector operating in two polarization states of light.
    • 本发明提供了一种集成装置及其制造和使用方法。 每个具有电子电路的装置的两个部分以至少1微米的精度相互对准。 对准系统包括两部分:与第一基板上的集成装置的第一电子电路集成的第一部分和与第二基板上的集成装置的第二电子电路集成的第二部分。 对准系统的第二部分包括至少一个光电二极管。 光电二极管电流的最大值表示集成器件的两个部分的最佳对准。 在一个实施例中,集成器件是用于高速光通信和化学感测的相干光检测器。 在另一个实施例中,集成光学装置是以两种偏振光状态工作的相干光学检测器。
    • 68. 发明申请
    • Integrated coherent optical detector
    • 集成相干光检测器
    • US20070140613A1
    • 2007-06-21
    • US11672372
    • 2007-02-07
    • Yaakov AchiamIsaac ShpantzerArthur GreenblattGeoffrey HarstonArkady KaplanPak Cho
    • Yaakov AchiamIsaac ShpantzerArthur GreenblattGeoffrey HarstonArkady KaplanPak Cho
    • G02B6/12
    • G02B6/4225
    • The present invention provides an integrated device and a method of its fabrication and use. Two parts of the device each having an electronic circuit are aligned adjacent to each other with an accuracy of at least 1 micron. An alignment system includes two parts: a first part integrated with the first electronic circuit of the integrated device on the first substrate and a second part integrated with the second electronic circuit of the integrated device on the second substrate. The second part of alignment system includes at least one photodiode. The maximal value of the photodiode current indicates the best alignment of two parts of the integrated device. In one embodiment the integrated device is a coherent optical detector for high speed optical communications and chemical sensing. In another embodiment the integrated optical device is a coherent optical detector operating in two polarization states of light.
    • 本发明提供了一种集成装置及其制造和使用方法。 每个具有电子电路的装置的两个部分以至少1微米的精度相互对准。 对准系统包括两部分:与第一基板上的集成装置的第一电子电路集成的第一部分和与第二基板上的集成装置的第二电子电路集成的第二部分。 对准系统的第二部分包括至少一个光电二极管。 光电二极管电流的最大值表示集成器件的两个部分的最佳对准。 在一个实施例中,集成器件是用于高速光通信和化学感测的相干光检测器。 在另一个实施例中,集成光学装置是以两种偏振光状态工作的相干光学检测器。