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Time-Dependent Many-Particle Simulation for Resonant Tunneling Diodes: Interpretation of an Analytical Small-Signal Equivalent Circuit

机译:共振隧穿二极管的时变多粒子仿真:解析小信号等效电路的解释

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A full many-particle (beyond the mean-field approximation) electron quantum-transport simulator, which is named BITLLES, is used to analyze the transient current response of resonant tunneling diodes (RTDs). The simulations have been used to test an analytical (free-fitting parameters) small-signal equivalent circuit for RTDs under stable direct-current-biased conditions. The comparison provides an excellent agreement and furnishes a way to physically interpret each circuit element. In addition, a nonlinear novel RTD behavior in the negative differential conductance region has been established, i.e. asymmetric time constants in the RTD current response when high–low or low–high voltage steps are considered.
机译:一个完整的多粒子(超越平均场近似)电子量子传输模拟器被称为BITLLES,用于分析共振隧穿二极管(RTD)的瞬态电流响应。该仿真已用于在稳定的直流偏置条件下测试RTD的解析(自由拟合参数)小信号等效电路。该比较提供了极好的协议,并提供了一种物理解释每个电路元素的方法。此外,已经建立了负差分电导区域中的一种新颖的非线性RTD行为,即当考虑高低或低高电压阶跃时,RTD电流响应中的不对称时间常数。

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