论文标题

量子系统与非平衡环境相互作用的量子系统化

Prethermalization of quantum systems interacting with non-equilibrium environments

论文作者

Anglés-Castillo, Andreu, Bañuls, Mari Carmen, Pérez, Armando, De Vega, Inés

论文摘要

当环境实际上与将其脱离平衡的其他字段或组件耦合时,开放量子系统的通常范式就会降低。在这里,我们通过考虑一个两个级别的系统耦合到第一个热储层,然后在不同的温度下探索第二层热浴,探索了最简单的情况。我们为系统提供了主方程描述,并表明在这种情况下,动态可能特别丰富。特别是,我们观察到细能力率,这是一种暂时现象,其中系统最初与第一个储层接近热平衡,但是在更长的时间收敛到第二个环境温度所决定的热状态之后。使用分析参数和数值模拟,我们分析了这种现象的发生,以及它如何取决于温度和耦合强度。如果将系统放置在两个这样的非平衡环境之间,那么现象学就变得更加丰富。在这种情况下,在系统最终达到非平衡稳态之前,通过系统的能电流可能表现出瞬态特征,甚至是切换方向。

The usual paradigm of open quantum systems falls short when the environment is actually coupled to additional fields or components that drive it out of equilibrium. Here we explore the simplest such scenario, by considering a two level system coupled to a first thermal reservoir that in turn couples to a second thermal bath at a different temperature. We derive a master equation description for the system and show that, in this situation, the dynamics can be especially rich. In particular, we observe prethermalization, a transitory phenomenon in which the system initially approaches thermal equilibrium with respect to the first reservoir, but after a longer time converges to the thermal state dictated by the temperature of the second environment. Using analytical arguments and numerical simulations, we analyze the occurrence of this phenomenon, and how it depends on temperatures and coupling strengths. The phenomenology gets even richer if the system is placed between two such non-equilibrium environments. In this case, the energy current through the system may exhibit transient features and even switch direction, before the system eventually reaches a non-equilibrium steady state.

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