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A generic phase between disordered Weyl semimetal and diffusive metal

机译:Weyl半金属与扩散金属之间的一般相

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摘要

Quantum phase transitions of three-dimensional (3D) Weyl semimetals (WSMs) subject to uncorrelated on-site disorder are investigated through quantum conductance calculations and finite-size scaling of localization length. Contrary to previous claims that a direct transition from a WSM to a diffusive metal (DM) occurs, an intermediate phase of Chern insulator (CI) between the two distinct metallic phases should exist due to internode scattering that is comparable to intranode scattering. The critical exponent of localization length is ν  ≃  1.3 for both the WSM-CI and CI-DM transitions, in the same universality class of 3D Gaussian unitary ensemble of the Anderson localization transition. The CI phase is confirmed by quantized nonzero Hall conductances in the bulk insulating phase established by localization length calculations. The disorder-induced various plateau-plateau transitions in both the WSM and CI phases are observed and explained by the self-consistent Born approximation. Furthermore, we clarify that the occurrence of zero density of states at Weyl nodes is not a good criterion for the disordered WSM, and there is no fundamental principle to support the hypothesis of divergence of localization length at the WSM-DM transition.
机译:通过量子电导计算和定位长度的有限尺寸缩放,研究了不相关的现场无序的三维(3D)Weyl半金属(WSM)的量子相变。与先前的说法相反,发生了从WSM到扩散金属(DM)的直接过渡,由于节点间散射可与节点内散射相比,因此在两个不同的金属相之间存在Chern绝缘体(CI)的中间相。对于WSM-CI和CI-DM转换,本地化长度的关键指数为ν1.3,与安德森本地化转换的3D高斯unit整体系相同。 CI相由通过定位长度计算建立的体绝缘相中量化的非零霍尔电导来确认。在WSM和CI阶段均观察到由无序引起的各种高原-高原转变,并通过自洽Born近似进行解释。此外,我们澄清了在Weyl节点处零密度状态的出现不是无序WSM的一个很好的标准,并且没有基本原理来支持WSM-DM过渡处的定位长度发散的假设。

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