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Anomalous Nernst effect in type-II Weyl semimetals

机译:II型Weyl Semimetals中的异常NERNST效果

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Topological Weyl semimetals (WSM), a new state of quantum matter with gapless nodal bulk spectrum and open Fermi arc surface states, have recently sparked enormous interest in condensed matter physics. Based on the symmetry and fermiology, it has been proposed that WSMs can be broadly classified into two types, type-I and type-II Weyl semimetals. While the undoped, conventional, type-I WSMs have point like Fermi surface and vanishing density of states (DOS) at the Fermi energy, the type-II Weyl semimetals break Lorentz symmetry explicitly and have tilted conical spectra with electron and hole pockets producing finite DOS at the Fermi level. The tilted conical spectrum and finite DOS at Fermi level in type-II WSMs have recently been shown to produce interesting effects such as a chiral anomaly induced longitudinal magnetoresistance that is strongly anisotropic in direction and a novel anomalous Hall effect. In this work, we consider the anomalous Nernst effect in type-II WSMs in the absence of an external magnetic field using the framework of semi-classical Boltzmann theory. Based on both a linearized model of time-reversal breaking WSM with a higher energy cut-off and a more realistic lattice model, we show that the anomalous Nernst response in these systems is strongly anisotropic in space, and can serve as a reliable signature of type-II Weyl semimetals in a host of magnetic systems with spontaneously broken time reversal symmetry.
机译:拓扑Weyl半纤维(WSM),一种具有无间隙节点散装和开放费米弧表面状态的量子材料的新状态,最近对凝聚物物理学引起了巨大的兴趣。基于对称性和神经性,已经提出了WSMS可以广泛分为两种类型,I型和II型Weyl半定态。虽然未掺杂的常规类型-I WSM具有相同的FERMi表面和FERMI能量的状态和消失密度,但II型Weyl半膜明确打破Lorentz对称性,并用电子和孔袋产生有限的电子和孔穴位倾斜的锥形光谱在费米水平的DOS。最近显示II型WSMS中Fermi水平的倾斜锥形谱和有限DOS,以产生有趣的效果,例如手性异常诱导纵向磁阻,其方向具有强烈各向异性和新的异常霍尔效应。在这项工作中,我们考虑使用半古典Boltzmann理论的框架在没有外部磁场的情况下在II型WSM中考虑异常的NERNST效果。基于具有较高能量截止和更现实的格子模型的时间反转破坏WSM的线性化模型,我们表明这些系统中的异常NERNST反应在空间中强烈各向异性,并且可以作为可靠的签名一系列磁性系统中的II型Weyl半定,具有自发破碎的时间反转对称。

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