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    • 1. 发明申请
    • OPTICAL INTERCONNECT
    • 光学互连
    • WO2009017771A2
    • 2009-02-05
    • PCT/US2008/009226
    • 2008-07-30
    • HEWLETT-PACKARD DEVELOPMENT COMPANY, L. P.FATTAL, DavidBICKNELL, RobertSANTORI, CharlesWU, Wei
    • FATTAL, DavidBICKNELL, RobertSANTORI, CharlesWU, Wei
    • G02B6/36G02B6/38
    • H04B10/803
    • An optical interconnect (100, 200, 300, 400, 445) includes a first circuit board (140, 260, 350, 405) having an optical source (110, 210, 240, 305, 440) and an optical receiver (125, 220, 235, 315, 441); and a second circuit board (145, 265, 355, 410) having data source (105, 205, 250) and an optical modulator (225, 230, 310, 425, 430, 435) optically coupled with the optical source (110, 210, 240, 305, 440) and optical receiver (125, 220, 235, 315, 441), wherein the optical modulator (225, 230, 310, 425, 430, 435) is configured to encode data from the data source (105, 205, 250) into an optical signal from the optical source (110, 210, 240, 305, 440). The optical receiver (125, 220, 235, 315, 441) is configured to receive the optical signal from the optical modulator (225, 230, 310, 425, 430, 435). A method of optical communication includes generating on a first circuit board (140, 260, 350, 405) an optical signal directed at a second circuit board (145, 265, 355, 410); modulating the optical signal with data at the second circuit board (145, 265, 355, 410); reflecting the optical signal to the first circuit board (140, 260, 350, 405); and demodulating the optical signal to receive the data at the first circuit board (140, 260, 350, 405).
    • 一种光学互连(100,200,300,400,445)包括具有光源(110,210,240,305,440)的第一电路板(140,260,350,405) )和光接收器(125,220,235,315,441); 以及具有数据源(105,205,250)和光学耦合于所述光源(110,115)的光调制器(225,230,310,425,430,435)的第二电路板(145,265,355,410) ,其中所述光调制器(225,230,310,425,430,435)被配置为对来自所述数据源的数据进行编码( 105,205,250)转换成来自光源(110,210,240,305,440)的光信号。 光接收器(125,220,235,315,441)被配置为从光调制器(225,230,310,425,430,435)接收光信号。 一种光通信的方法包括在第一电路板(140,260,350,405)上产生指向第二电路板(145,265,355,410)的光信号; 用第二电路板(145,265,355,410)处的数据调制光信号; 将光信号反射到第一电路板(140,260,350,405); 以及解调光信号以在第一电路板(140,260,350,405)处接收数据。
    • 7. 发明申请
    • COMPACT SYSTEMS FOR GENERATING POLARIZATION-ENTANGLED PHOTONS
    • 用于生成偏振光子的紧凑系统
    • WO2008013681A2
    • 2008-01-31
    • PCT/US2007/015899
    • 2007-07-11
    • HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.FIORENTINO, MarcoBEAUSOLEIL, RaymondSPILLANE, SeanSANTORI, Charles
    • FIORENTINO, MarcoBEAUSOLEIL, RaymondSPILLANE, SeanSANTORI, Charles
    • G06N99/00
    • G02B27/28B82Y10/00B82Y20/00G02B1/005G02B27/286G02F1/39G06N99/002H04L9/0858
    • Various embodiments of the present invention are directed to compact systems for generating polarization-entangled photons. In one embodiment of the present invention, a non-degenerate, polarization-entangled photon source (800, 1200) comprises a half-wave plate (802, 1202) that outputs both a first pump beam and a second beam and a second pump beam, and a first beam displacer (806, 1204) directs the first pump beam into a first transmission channel (824, 1224) and the second pump beam into a second transmission channel (826, 1226). A down-conversion device (803, 804, 810, 1208, 1210) converts the first pump beam into first ignal and idler photons and converts the second pump beam into second signal and idler photons. A second beam displacer (8089, 1206) directs both the first signal and idler photons and the second signal and idler photons into a single transmission channel. A dichroic mirror (812, 1212) directs the first and second signal photons to a first fiber coupler and the first and second idler photons to a second fiber optic coupler.
    • 本发明的各种实施例涉及用于产生偏振纠缠光子的紧凑系统。 在本发明的一个实施例中,非简并极化纠缠的光子源(800,1200)包括半波片(802,1202),其输出第一泵浦光束和第二光束以及第二泵浦光束 ,并且第一光束置换器(806,1204)将第一泵浦光束引导到第一透射通道(824,1224)中,并且将第二泵浦光束引导到第二透射通道(826,1226)中。 下变频装置(803,804,810,1208,1210)将第一泵浦光束转换成第一点火和空闲光子,并将第二泵浦光束转换成第二信号和惰轮光子。 第二光束置换器(8089,1206)将第一信号和惰轮光子以及第二信号和惰轮光子两者都引导到单个传输通道中。 二向色镜(812,1212)将第一和第二信号光子引导到第一光纤耦合器,并将第一和第二惰轮光子引导到第二光纤耦合器。