Weyl半金属的量化电化学输运

R. Flores-Calder'on, A. Mart'in-Ruiz
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引用次数: 6

摘要

我们证明了在外电场和化学势梯度的作用下,可以在Weyl半金属中产生无反转和镜像对称的拓扑电流。我们推导了非线性电导率张量的解析表达式,并证明了当费米能级接近Weyl节点时,它对于小倾斜是近量子化的。当van Hove点远大于最大费米能级时,能带结构由两个手性相反的线性色散Weyl费米子描述。在这种情况下,电化学响应被完全量化为基本常数和散射时间,可以用来直接测量Weyl点的拓扑电荷。我们发现电化学手性电流可能来源于类似于轴子电动力学的电磁作用,其中位置相关的手性费米能级起着轴子场的作用。这表明我们的结果是手性异常的直接结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantized electrochemical transport in Weyl semimetals
We show that under the effect of an external electric field and a gradient of chemical potential, a topological electric current can be induced in Weyl semimetals without inversion and mirror symmetries. We derive analytic expressions for the nonlinear conductivity tensor and show that it is nearly quantized for small tilting when the Fermi levels are close to the Weyl nodes. When the van Hove point is much larger than the largest Fermi level, the band structure is described by two linearly dispersing Weyl fermions with opposite chirality. In this case, the electrochemical response is fully quantized in terms of fundamental constants and the scattering time, and it can be used to measure directly the topological charge of Weyl points. We show that the electrochemical chiral current may be derived from an electromagnetic action similar to axion electrodynamics, where the position-dependent chiral Fermi level plays the role of the axion field. This posits our results as a direct consequence of the chiral anomaly.
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