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Quantum Hall effects in a Weyl semimetal: Possible application in pyrochlore iridates

机译:Weyl半金属中的量子霍耳效应:在烧绿石铱酸盐中的可能应用

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摘要

There has been much interest in pyrochlore iridates A-2Ir-2O-7 where both strong spin-orbital coupling and strong correlation are present. A recent local density approximation calculation [X. Wan, A. M. Turner, A. Vishwanath, and S. Y. Savrasov, Phys. Rev. B 83, 205101 (2011)] suggests that the system is likely in a three-dimensional topological semimetallic phase: a Weyl semimetal. Such a system has zero carrier density and arrives at the quantum limit even in a weak magnetic field. In this paper, we discuss two quantum effects of this system in a magnetic field: a pressure-induced anomalous Hall effect and a magnetic-field-induced charge density wave at the pinned wave vector connecting Weyl nodes with opposite chiralities. A general formula of the anomalous Hall coefficients in a Weyl semimetal is also given. Both proposed effects can be probed by experiments in the near future and can be used to detect the Weyl semimetal phase.
机译:人们对存在着强烈自旋-轨道耦合和强相关性的吡咯氯铱酸盐A-2Ir-2O-7产生了浓厚的兴趣。最近的局部密度近似计算[X。 Wan,A。M. Turner,A。Vishwanath和S.Y. Savrasov,物理Rev. B 83,205101(2011)]建议该系统可能处于三维拓扑半金属相:Weyl半金属。这种系统的载流子密度为零,即使在弱磁场中也达到量子极限。在本文中,我们讨论了该系统在磁场中的两个量子效应:在连接具有相反手性的Weyl节点的固定波矢量处,压力引起的异常霍尔效应和磁场引起的电荷密度波。还给出了Weyl半金属中异常霍尔系数的一般公式。拟议的两种效果都可以在不久的将来通过实验进行探究,并可用于检测Weyl半金属相。

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