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Wigner function simulation of intrinsic oscillations hysteresis and bistability in resonant tunneling structures

机译:共振隧穿结构固有振动滞后和双稳的Wigner函数模拟

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Abstract: Several interesting behaviors of resonant tunneling diodes (RTDs) are investigated through numerical simulation: high frequency self-oscillations, strong intrinsic hysteresis, and pronounced static bistability. Each of these behaviors has been observed experimentally in RTDs, but the measured effects have been slower (oscillations), weaker (hysteresis, bistability), or required external inductance to occur (oscillations, hysteresis). These simulations indicate that the effects occur strongly and intrinsically in an RTD when a narrow energy band in the emitter aligns just below a quantized energy state in the quantum well. Quantum system models and available computation power have only recently developed to a point where the necessary physical effects (inelastic scattering, self-consistency, and transient operation) can be properly included to simulate these behaviors in a quantum device. A 1-D Wigner function model is used for transient, self-consistent RTD simulations including inelastic scattering. One-dimensional transfer-matrix calculations are used to locate quantized energy levels. The physics behind the intrinsic oscillations, hysteresis and bistability are described for the simulated RTD. Simulation results are also presented for double-well RTD structures in an attempt to enhance these effects. !38
机译:摘要:通过数值模拟研究了共振隧穿二极管(RTD)的几种有趣行为:高频自激振荡,强固有滞后和明显的静态双稳态。在RTD中已通过实验观察到了每种行为,但是测得的效果较慢(振荡),较弱(磁滞,双稳态)或需要外部电感发生(振荡,磁滞)。这些模拟表明,当发射极中的窄能带在量子阱中的量化能态下对齐时,在RTD中强烈而固有地发生了这种效应。量子系统模型和可用的计算能力直到最近才发展到可以适当地包含必要的物理效应(非弹性散射,自洽和瞬态操作)以模拟量子设备中的这些行为的程度。一维Wigner函数模型用于包括非弹性散射在内的瞬态,自洽RTD模拟。一维传递矩阵计算用于定位量化的能级。描述了模拟RTD的固有振荡,滞后性和双稳性背后的物理原理。还提出了双阱RTD结构的仿真结果,以试图增强这些效果。 !38

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