论文标题

量子异常隔热器中平均异常的温度和化学势依赖性

Temperature and Chemical Potential Dependence of the Parity Anomaly in Quantum Anomalous Hall Insulators

论文作者

Tutschku, C., Nogueira, F. S., Northe, C., Brink, J. van den, Hankiewicz, E. M.

论文摘要

二维量子异常大厅绝缘子(如(Hg,MN)TE量子井或磁性掺杂(BI,SB)TE薄膜的低能物理学可以由两个Chern绝缘子(包括狄拉克)有效地描述这些Chern绝缘子中的每一个都与平面量子电动力学的平价异常直接相关。在这项工作中,我们分析了在化学势和平面磁场的影响下,在2+1个时空尺寸中,单个Chern绝缘子的有限温度厅电导率。在零磁场上,这种非隔离的传输系数源自平面量子电动力学的奇偶元异常。我们表明,奇偶元异常本身并未因有限温度效应而重新归一化。但是,它在Chern绝缘子的有效作用中诱导了两个不同物理起源的术语,这与霍尔电导率成正比。第一项是独立的温度和化学势,仅编码内在拓扑响应。第二项指定了传导和价带状态的非原始热响应。特别是,我们表明Chern绝缘子的相对论质量抵消了有限温度的影响,而其非相关质量会增强这些校正。此外,我们将分析扩展到有限的磁场,并将其中的Chern绝缘子的热响应与光谱不对称性相关联,这是轨道场中平均异常的度量。

The low-energy physics of two-dimensional Quantum Anomalous Hall insulators like (Hg,Mn)Te quantum wells or magnetically doped (Bi,Sb)Te thin films can be effectively described by two Chern insulators, including a Dirac, as well as a momentum-dependent mass term. Each of those Chern insulators is directly related to the parity anomaly of planar quantum electrodynamics. In this work, we analyze the finite temperature Hall conductivity of a single Chern insulator in 2+1 space-time dimensions under the influence of a chemical potential and an out-of-plane magnetic field. At zero magnetic field, this non-dissipative transport coefficient originates from the parity anomaly of planar quantum electrodynamics. We show that the parity anomaly itself is not renormalized by finite temperature effects. However, it induces two terms of different physical origin in the effective action of a Chern insulator, which is proportional to the Hall conductivity. The first term is temperature and chemical potential independent, and solely encodes the intrinsic topological response. The second term specifies the non-topological thermal response of conduction and valence band states. In particular, we show that the relativistic mass of a Chern insulator counteracts finite temperature effects, whereas its non-relativistic mass enhances these corrections. Moreover, we extend our analysis to finite magnetic fields and relate the thermal response of a Chern insulator therein to the spectral asymmetry, which is a measure of the parity anomaly in orbital fields.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源