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从耗散动力学到纳米尺度热传递研究:自旋玻色子模型分析

From dissipative dynamics to studies of heat transfer at the nanoscale: analysis of the spin-boson model.

作者信息

Boudjada Nazim, Segal Dvira

机构信息

Ecole Polytechnique de Montreal , Montreal, Quebec, Canada H3C 3A7.

出版信息

J Phys Chem A. 2014 Nov 26;118(47):11323-36. doi: 10.1021/jp5091685. Epub 2014 Nov 14.

DOI:10.1021/jp5091685
PMID:25396751
Abstract

We study in a unified manner the dissipative dynamics and the transfer of heat in the two-bath spin-boson model. We use the Bloch-Redfield (BR) formalism, valid in the very weak system-bath coupling limit, the noninteracting-blip approximation (NIBA), applicable in the nonadiabatic limit, and iterative, numerically exact path integral tools. These methodologies were originally developed for the description of the dissipative dynamics of a quantum system, and here they are applied to explore the problem of quantum energy transport in a nonequilibrium setting. Specifically, we study the weak-to-intermediate system-bath coupling regime at high temperatures kBT/ħ > ε, with ε as the characteristic frequency of the two-state system. The BR formalism and NIBA can lead to close results for the dynamics of the reduced density matrix (RDM) in a certain range of parameters. However, relatively small deviations in the RDM dynamics propagate into significant qualitative discrepancies in the transport behavior. Similarly, beyond the strict nonadiabatic limit NIBA's prediction for the heat current is qualitatively incorrect: It fails to capture the turnover behavior of the current with tunneling energy and temperature. Thus, techniques that proved meaningful for describing the RDM dynamics, to some extent even beyond their rigorous range of validity, should be used with great caution in heat transfer calculations, because qualitative-serious failures develop once parameters are mildly stretched beyond the techniques' working assumptions.

摘要

我们以统一的方式研究双浴自旋玻色子模型中的耗散动力学和热传递。我们使用在非常弱的系统 - 浴耦合极限下有效的布洛赫 - 雷德菲尔德(BR)形式理论、适用于非绝热极限的非相互作用脉冲近似(NIBA)以及迭代的、数值精确的路径积分工具。这些方法最初是为描述量子系统的耗散动力学而开发的,在此用于探索非平衡环境下的量子能量传输问题。具体而言,我们研究高温下((k_BT/\hbar > \varepsilon),其中(\varepsilon)为两态系统的特征频率)弱到中等系统 - 浴耦合区域。在一定参数范围内,BR形式理论和NIBA对于约化密度矩阵(RDM)的动力学可得出相近结果。然而,RDM动力学中相对较小的偏差会在传输行为中导致显著的定性差异。同样,在严格的非绝热极限之外,NIBA对热流的预测在定性上是不正确的:它无法捕捉电流随隧穿能量和温度的翻转行为。因此,在传热计算中,即使在某种程度上超出其严格有效性范围,已证明对描述RDM动力学有意义的技术也应谨慎使用,因为一旦参数稍微超出这些技术的工作假设,就会出现严重的定性失效。

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