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Compact bidirectional optical interconnects using arrays of vertical cavity surface-emitting lasers

机译:使用垂直腔表面发射激光器阵列的紧凑型双向光学互连

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Abstract: A compact optical crosspoint switch is being fabricated at the University of Colorado. It consists of two identical smart pixels arrays (SPAs) which face one another. The arrays communicate using 64 optical channels in both forward and reverse directions. Each channel uses a vertical-cavity surface-emitting laser (VCSEL) which is collimated using a microlens. The collimated beam is routed to the appropriate photodetector on the facing array using a Fourier computer generated hologram (CGH). Each VCSEL has a separate hologram associated with it, allowing space variant interconnection between the facing arrays. Each SPA has an 8 by 8 array of VCSELs adjacent to an 8 by 8 array of photodetectors and smart pixel circuitry. These are integrated with the microlenses and holograms and packaged to form a compact and stable system, occupying several cm$+3$/. At present each smart pixel has several logic gates, but an optically similar system with approximately 1000 gates per pixel is under development. This type of interconnection is suited to board-to-board applications, and potentially offers high speed, low cost, high density bi-directional connections. The fabrication of the switch incorporates several novel integration techniques. !1
机译:摘要:科罗拉多大学正在制造一种紧凑的光学交叉点开关。它由彼此面对的两个相同的智能像素阵列(SPA)组成。阵列使用64个光通道进行正向和反向通信。每个通道都使用垂直腔表面发射激光器(VCSEL),该激光器使用微透镜进行准直。使用傅立叶计算机生成的全息图(CGH)将准直光束路由到面板上适当的光电探测器。每个VCSEL都有一个与之相关的单独全息图,从而允许在面对的阵列之间进行空间变化的互连。每个SPA都有一个8×8的VCSEL阵列,与一个8×8的光电检测器和智能像素电路阵列相邻。这些与微透镜和全息图集成在一起,并包装形成一个紧凑而稳定的系统,占据数cm $ + 3 $ /。目前,每个智能像素都有几个逻辑门,但是正在开发一种光学相似的系统,每个像素约有1000个门。这种类型的互连适用于板对板应用,并可能提供高速,低成本,高密度的双向连接。开关的制造采用了几种新颖的集成技术。 !1

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