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Convolution-based global simulation technique for millimeter-wave photodetector and photomixer circuits

机译:基于卷积的毫米波光电探测器和光电混合器电路全局仿真技术

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摘要

A fast convolution-based time-domain approach to global photonic-circuit simulation is presented that incorporates a physical device model in the complete detector or mixer circuit. The device used in the demonstration of this technique is a GaAs metal-semiconductor-metal (MSM) photodetector that offers a high response speed for the detection and generation of millimeter waves. Global simulation greatly increases the accuracy in evaluating the complete circuit performance because it accounts for the effects of the millimeter-wave embedding circuit. Device and circuit performance are assessed by calculating optical responsivity and bandwidth. Device-only simulations using GaAs MSMs are compared with global simulations that illustrate the strong interdependence between device and external circuit.
机译:提出了一种基于卷积的快速时域方法进行全局光子电路仿真,该方法在完整的检测器或混频器电路中合并了物理设备模型。该技术演示中使用的设备是GaAs金属-半导体-金属(MSM)光电探测器,该探测器为毫米波的检测和生成提供了高响应速度。全局仿真极大地提高了评估整个电路性能的准确性,因为它考虑了毫米波嵌入电路的影响。通过计算光响应度和带宽来评估设备和电路性能。将使用GaAs MSM的仅器件仿真与整体仿真进行了比较,这些仿真说明了器件与外部电路之间的强烈相互依赖性。

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