基于谐振隧道二极管的光电电路建模

João F. M. Rei, James A. Foot, G. C. Rodrigues, J. Figueiredo
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引用次数: 1

摘要

谐振隧道二极管(rtd)是室温下速度最快的纯电子半导体器件。当与光电器件集成时,由于其高度非线性特性和电增益,它们可以产生具有新颖功能的新器件,在未来的超宽带通信系统中具有潜在的应用(例如欧盟H2020 iBROW项目)。最近对这些设备的报道导致需要适当的模拟工具。在这项工作中,我们提出了基于RTD的光电子电路仿真包,以提供电路信号水平分析,如瞬态和频率响应。我们将介绍和讨论模型,并评估模拟包。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling of optoelectronic circuits based on resonant tunneling diodes
Resonant tunneling diodes (RTDs) are the fastest pure electronic semiconductor devices at room temperature. When integrated with optoelectronic devices they can give rise to new devices with novel functionalities due to their highly nonlinear properties and electrical gain, with potential applications in future ultra-wide-band communication systems (see e.g. EU H2020 iBROW Project). The recent coverage on these devices led to the need to have appropriated simulation tools. In this work, we present RTD based optoelectronic circuits simulation packages to provide circuit signal level analysis such as transient and frequency responses. We will present and discuss the models, and evaluate the simulation packages.
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