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非热储相干性对微观碰撞模型中热输运的影响。

Effect of coherence of nonthermal reservoirs on heat transport in a microscopic collision model.

机构信息

School of Physics, Beijing Institute of Technology, Beijing 100081, People's Republic of China.

Southwest Institute of Technical Physics, Chengdu, Sichuan 610041, People's Republic of China.

出版信息

Phys Rev E. 2018 Feb;97(2-1):022111. doi: 10.1103/PhysRevE.97.022111.

DOI:10.1103/PhysRevE.97.022111
PMID:29548129
Abstract

We investigate the heat transport between two nonthermal reservoirs based on a microscopic collision model. We consider a bipartite system consisting of two identical subsystems, and each subsystem interacts with its own local reservoir, which consists of a large collection of initially uncorrelated ancillas. Then a heat transport is formed between two reservoirs by a sequence of pairwise collisions (intersubsystem and subsystem-local reservoir). In this paper we consider two kinds of the reservoir's initial states: the thermal state and the state with coherence whose diagonal elements are the same as that of the thermal state and the off-diagonal elements are nonzero. In this way, we define the effective temperature of the reservoir with coherence according to its diagonal elements. We find that for two reservoirs having coherence the direction of the steady current of heat is different for different phase differences between the two initial states of two reservoirs, especially the heat can transfer from the "cold reservoir" to the "hot reservoir" in the steady regime for particular phase difference. In the limit of the effective temperature difference between the two reservoirs ΔT→0, for most of the phase differences, the steady heat current increases with the increase of effective temperature until it reaches the high effective temperature limit, while for the thermal state or particular phase difference the steady heat current decreases with the increase of temperature at high temperatures, and in this case the conductance can be obtained.

摘要

我们基于微观碰撞模型研究了两个非热库之间的热传递。我们考虑了一个由两个相同子系统组成的二能级系统,每个子系统与自己的局部库相互作用,局部库由大量初始无关联的辅助量子比特组成。然后通过一系列两两碰撞(子系统间和子系统-局部库间)在两个库之间形成热传递。在本文中,我们考虑了两种库的初始状态:热态和相干态,相干态的对角元素与热态相同,非对角元素不为零。通过这种方式,我们根据对角元素定义了具有相干性的库的有效温度。我们发现,对于具有相干性的两个库,在两个库的两个初始状态之间的不同相位差下,稳态热流的方向是不同的,特别是在特定的相位差下,热可以从“冷库”传递到“热库”。在两个库的有效温差 ΔT→0 的极限下,对于大多数相位差,稳态热流随着有效温度的增加而增加,直到达到高有效温度极限,而对于热态或特定相位差,在高温下,稳态热流随着温度的升高而降低,在这种情况下可以得到电导。

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