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非平衡热态拓扑绝缘体中的涨落诱导扭矩。

Fluctuation-Induced Torque on a Topological Insulator out of Thermal Equilibrium.

机构信息

Department of Physics and Astronomy, Michigan State University, East Lansing, Michigan 48824, USA.

Joint Quantum Institute, NIST/University of Maryland, College Park, Maryland 20742, USA.

出版信息

Phys Rev Lett. 2019 Aug 2;123(5):055901. doi: 10.1103/PhysRevLett.123.055901.

Abstract

Topological insulators with the time reversal symmetry broken exhibit strong magnetoelectric and magneto-optic effects. While these effects are well understood in or near equilibrium, nonequilibrium physics is richer yet less explored. We consider a topological insulator thin film, weakly coupled to a ferromagnet, out of thermal equilibrium with a cold environment (quantum electrodynamics vacuum). We show that the heat flow to the environment is strongly circularly polarized, thus carrying away angular momentum and exerting a purely fluctuation-driven torque on the topological insulator film. Utilizing the Keldysh framework, we investigate the universal nonequilibrium response of the TI to the temperature difference with the environment. Finally, we argue that experimental observation of this effect is within reach.

摘要

具有时间反演对称性破缺的拓扑绝缘体表现出强烈的磁电和磁光效应。虽然这些效应在平衡或近平衡状态下已经得到很好的理解,但非平衡物理学更加丰富,却还没有得到充分的探索。我们考虑了一种拓扑绝缘体薄膜,它与铁磁体弱耦合,与冷环境(量子电动力学真空)处于热不平衡状态。我们表明,流向环境的热流具有强烈的圆偏振性,从而带走角动量,并对拓扑绝缘体薄膜施加纯粹由涨落驱动的扭矩。我们利用凯尔德什框架研究了 TI 对与环境的温差的普遍非平衡响应。最后,我们认为实验观察到这种效应是可行的。

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