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An approach to quantum transport based on reduced hierarchy equations of motion: Application to a resonant tunneling diode

机译:基于运动的简化层次方程的量子传输方法:在共振隧穿二极管中的应用

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摘要

The quantum dissipative dynamics of a tunneling process through double barrier structures is investigated on the basis of a rigorous treatment for the first time. We employ a Caldeira-Leggett Hamiltonian with an effective potential calculated self-consistently, accounting for the electron distribution. With this Hamiltonian, we use the reduced hierarchy equations of motion in the Wigner space representation to study the effects of non-Markovian thermal fluctuations and dissipation at finite temperature in a rigorous manner. Hysteresis, double plateau-like behavior, and self-excited current oscillation are observed in a negative differential resistance (NDR) region of the current-voltage curve. We find that while most of the current oscillations decay in time in the NDR region, there is a steady oscillation characterized by a tornado-like rotation in the Wigner space in the upper plateau of the NDR region.
机译:首次在严格处理的基础上研究了通过双势垒结构的隧穿过程的量子耗散动力学。我们采用Caldeira-Leggett哈密顿量,其有效电势可自洽计算,并考虑了电子分布。通过此哈密顿量,我们在维格纳空间表示中使用运动的简化层次方程,以严格的方式研究了有限温度下非马氏热波动和耗散的影响。在电流-电压曲线的负微分电阻(NDR)区域中观察到磁滞,双平稳状态和自激电流振荡。我们发现,尽管大多数电流振荡在NDR区域中随时间衰减,但在NDR区域上高原的Wigner空间中存在着以龙卷风状旋转为特征的稳定振荡。

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