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Fullwave analysis of picosecond photoconductive switches

机译:皮秒光电导开关的全波分析

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摘要

A fullwave analysis method for characterizing fast photoconductive switches (PCs) is proposed. Three-dimensional Maxwell curl equations, including the conductive current components, are solved using a finite-difference time-domain scheme. It is found from simulations that PCs in coupled microstrip lines with small widths and spacings are very effective in avoiding propagation of non-quasi-TEM modes and for achieving rapid responses. Futhermore, responses for PCs with pulse-forming networks constructed of coplanar waveguide shunt electrodes are simulated. Ultrashort electrical pulses with minimum widths of 0.2 and 0.4 ps can be obtained by symmetric and antisymmetric excitation methods, respectively, for linewidth and spacing readily realized.
机译:提出了一种用于表征快速光电导开关(PC)的全波分析方法。使用有限差分时域方案求解包含导电电流分量的三维麦克斯韦卷曲方程。从仿真中发现,具有较小宽度和间距的耦合微带线中的PC在避免传播非准TEM模式和实现快速响应方面非常有效。此外,模拟了具有由共面波导并联电极构成的脉冲形成网络的PC的响应。可以通过对称和反对称激励方法分别获得最小宽度为0.2和0.4 ps的超短电脉冲,以轻松实现线宽和间距。

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