论文标题

动力轴绝缘子的有限摩托明不稳定

Finite-Momentum Instability of Dynamical Axion Insulator

论文作者

Curtis, Jonathan B., Petrides, Ioannis, Narang, Prineha

论文摘要

手性异常是量子效应的惊人特征,导致经典保守的电流的不保守,特别是费米斯系统中的手性电流。在冷凝物质系统中,手性异常可以在Weyl半学中实现,然后由于动量空间中的Weyl点的分离而表现出与异常相关的特征性电磁反应。然而,在存在强相互作用的情况下,Weyl半学相可以产生有序的相,并自发打破手性对称性。然后,这导致了一种金石模式,该模式可以具有内在的动力学和波动,从而导致动态性手性异常反应 - 一种称为动力轴绝缘子的情况。在这里,我们考虑了该动态轴绝缘子的简单模型,并计算戈德石模式的运动方程。令人惊讶的是,我们发现金石模式似乎表现出负相位刚度,这表明了系统对有限动量的进一步不稳定。预计这将导致异常反应的强烈波动。我们提出了一种长长的LIFSCHITZ类型的波长理论,该理论可以控制该系统中的轴心动力学,并评论该模型的可能签名。

The chiral anomaly is a striking signature of quantum effects which lead to the non-conservation of a classically conserved current, specifically the chiral currents in systems of fermions. In condensed matter systems, the chiral anomaly can be realized in Weyl semimetals, which then exhibit a signature electromagnetic response associated to anomaly due to the separation of the Weyl points in momentum space. In the presence of strong interactions however, a Weyl semimetal phase can give rise to an ordered phase, and spontaneously break the chiral symmetry. This then leads to a Goldstone mode which can have intrinsic dynamics and fluctuations, leading to a dynamical chiral anomaly response -- a situation known as a dynamical axion insulator. Here we consider a simple model of this dynamical axion insulator and calculate the equations of motion for the Goldstone mode. Surprisingly, we find that the Goldstone mode appears to exhibit a negative phase stiffness, signalling a further instability of the system towards finite momentum. This is expected to lead to very strong fluctuations of the anomalous response. We suggest a long-wavelength theory of Lifschitz type which may govern the axion dynamics in this system and comment on possible signatures of this model.

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