论文标题
量子共振对非平衡开放系统中局部温度的影响
Effect of quantum resonances on local temperature in nonequilibrium open systems
论文作者
论文摘要
通过平衡来测量开放系统的局部温度正在成为研究纳米系统局部热力学特性的一种新方法。已经提出了一种操作方案,以通过将探测器耦合到系统,然后将扰动最小化与探测系统的某些局部观察到的扰动来确定局部温度。在本文中,我们首先表明这种局部温度对于单个量子杂质和可观察到的局部温度是唯一的。然后,我们通过提出局部最小扰动条件(LMPC),将此协议扩展到由多个量子杂质组成的打开系统。量子共振对局部温度的影响均通过分析结果和数值结果阐明。特别是,我们证明量子共振可能导致在热偏置下沿多层链链的局部温度的强振荡。
Measuring local temperatures of open systems out of equilibrium is emerging as a novel approach to study the local thermodynamic properties of nanosystems. An operational protocol has been proposed to determine the local temperature by coupling a probe to the system and then minimizing the perturbation to a certain local observable of the probed system. In this paper, we first show that such a local temperature is unique for a single quantum impurity and the given local observable. We then extend this protocol to open systems consisting of multiple quantum impurities by proposing a local minimal perturbation condition (LMPC). The influence of quantum resonances on the local temperature is elucidated by both analytic and numerical results. In particular, we demonstrate that quantum resonances may give rise to strong oscillations of the local temperature along a multiimpurity chain under a thermal bias.