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FDTD modelling of an InP traveling-wave HPT

机译:InP行波HPT的FDTD建模

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摘要

The development and application of a three-dimensional finite-difference time-domain (FDTD) model for a traveling-wave heterojunction phototransistor (TW-HPT) are presented. The model is enhanced using effective permittivity schemes at the dielectric interfaces and special techniques for the treatment of very thin material sheets. The 3D full-wave electgromagnetic model allows the numerical calculation of the output photocurrent, electrical characteristic impedance, light absorption, microwave losses as well as microwave and optical dispersion. Run in a fast, parallel processing, machine the simulation herein allowed (for the first time, to the best of the authors' knowledge) the simultaneous investigation of the optical and microwave characteristics of the traveling-wave structure. This is in contrast to the approach followed by other researchers in the past, as well as by popular simulation packages, based on which results only for the microwave property can be obtained. Snapshots of the field propagation inside the device provide valuable insight into its passive behavior and clearly demonstrate the device's velocity mismatch between the optical signal and the photogenerated electrical pulse. Numerical results for the effective refractive indices of the optical and electrical wave quantify the difference in the velocities of the two waves.
机译:提出了行波异质结光电晶体管(TW-HPT)的三维有限差分时域(FDTD)模型的开发和应用。通过在介电界面处使用有效的介电常数方案以及用于处理非常薄的材料片材的特殊技术来增强该模型。 3D全波电磁模型允许对输出光电流,电特性阻抗,光吸收,微波损耗以及微波和光学色散进行数值计算。在快速,并行的处理中运行,对本文的模拟进行机加工(首次,据作者所知)允许同时研究行波结构的光学和微波特性。这与过去其他研究人员以及流行的仿真程序所采用的方法形成对比,在此基础上只能获得有关微波特性的结果。器件内部场传播的快照为器件的无源行为提供了宝贵的见解,并清楚地证明了器件在光信号和光生电脉冲之间的速度失配。光波和电波的有效折射率的数值结果量化了这两个波的速度差异。

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