强耦合下开放量子系统的有效哈密顿理论

IF 9.3 Q1 PHYSICS, APPLIED
Nicholas Anto-Sztrikacs, A. Nazir, D. Segal
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引用次数: 8

摘要

我们提出了反应坐标极化子变换(RCPT)框架,用于生成有效的哈密顿模型,以处理与周围环境强耦合的非平衡开放量子系统。我们的方法基于哈密顿量的两个精确变换,然后是其受控截断,以一个与环境耦合减弱的新哈密顿量结束。这个新的有效哈密顿量反映了初始哈密顿量,只是它的参数由系统浴耦合修饰。RCPT方法的强大和优雅之处在于其通用性和数学简单性,允许进行分析工作,从而深刻理解强系统浴耦合效应对开放量子系统现象的影响。这项工作中询问的例子包括纳米尺度量子热化、电荷和能量传输的正则模型,吸收式制冷机和热电发生器等量子热力学机器的性能边界,以及多体耗散自旋链的平衡和非平衡行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effective-Hamiltonian Theory of Open Quantum Systems at Strong Coupling
We present the reaction-coordinate polaron-transform (RCPT) framework for generating effective Hamiltonian models to treat nonequilibrium open quantum systems at strong coupling with their surroundings. Our approach, which is based on two exact transformations of the Hamiltonian followed by its controlled truncation, ends with a new Hamiltonian with a weakened coupling to the environment. This new effective Hamiltonian mirrors the initial one, except that its parameters are dressed by the system-bath couplings. The power and elegance of the RCPT approach lie in its generality and in its mathematical simplicity, allowing for analytic work and thus profound understanding of the impact of strong system-bath coupling effects on open quantum system phenomena. Examples interrogated in this work include canonical models for quantum thermalization, charge and energy transport at the nanoscale, performance bounds of quantum thermodynamical machines such as absorption refrigerators and thermoelectric generators, as well as the equilibrium and nonequilibrium behavior of many-body dissipative spin chains.
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CiteScore
14.60
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