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具有和不具有能带拓扑的稳健非平衡边缘电流

Robust Nonequilibrium Edge Currents with and without Band Topology.

作者信息

Mitchison Mark T, Rivas Ángel, Martin-Delgado Miguel A

机构信息

School of Physics, Trinity College Dublin, College Green, Dublin 2, D02 K8N4, Ireland.

Departamento de Física Teórica, Facultad de Ciencias Físicas, Universidad Complutense, 28040 Madrid, Spain.

出版信息

Phys Rev Lett. 2022 Mar 25;128(12):120403. doi: 10.1103/PhysRevLett.128.120403.

Abstract

We study two-dimensional bosonic and fermionic lattice systems under nonequilibrium conditions corresponding to a sharp gradient of temperature imposed by two thermal baths. In particular, we consider a lattice model with broken time-reversal symmetry that exhibits both topologically trivial and nontrivial phases. Using a nonperturbative Green function approach, we characterize the nonequilibrium current distribution in different parameter regimes. For both bosonic and fermionic systems, we find chiral edge currents that are robust against coupling to reservoirs and to the presence of defects on the boundary or in the bulk. This robustness not only originates from topological effects at zero temperature but, remarkably, also persists as a result of dissipative symmetries in regimes where band topology plays no role. Chirality of the edge currents implies that energy locally flows against the temperature gradient without any external work input. In the fermionic case, there is also a regime with topologically protected boundary currents, which nonetheless do not circulate around all system edges.

摘要

我们研究了二维玻色子和费米子晶格系统在非平衡条件下的情况,该条件对应于由两个热库施加的急剧温度梯度。特别地,我们考虑一个具有破缺时间反演对称性的晶格模型,它展现出拓扑平凡相和非平凡相。使用非微扰格林函数方法,我们刻画了不同参数区域中的非平衡电流分布。对于玻色子和费米子系统,我们都发现了手性边缘电流,它们对于与库的耦合以及边界或体中缺陷的存在具有鲁棒性。这种鲁棒性不仅源于零温度下的拓扑效应,而且值得注意的是,在能带拓扑不起作用的区域中,由于耗散对称性,它仍然存在。边缘电流的手性意味着能量在没有任何外部功输入的情况下局部地逆着温度梯度流动。在费米子的情况下,还存在一个具有拓扑保护边界电流的区域,然而这些电流并不会环绕系统的所有边缘流动。

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