论文标题

整数量子厅过渡的统一阶级和普遍性中二维无序dirac费米的批判性

Criticality of two-dimensional disordered Dirac fermions in the unitary class and universality of the integer quantum Hall transition

论文作者

Sbierski, Björn, Dresselhaus, Elizabeth J., Moore, Joel E., Gruzberg, Ilya A.

论文摘要

二维(2D)DIRAC费米子是现代冷凝物理物理学的中心范式,描述了石墨烯,某些类别的超导体和3D拓扑绝缘子表面的低能激发。在零能量E = 0时,带有质量M的Dirac Fermions是带绝缘子,Chern数在M = 0时跳跃。该观察结果Ludwig等人[Phys。 Rev. B 50,7526(1994)]猜想2D无序的Dirac Fermions(DDF)和Integer Quantum Hall Transition(IQHT)中的过渡受相同的固定点控制,并且具有相同的通用关键特性。鉴于对量子异常效应的新兴领域的影响深远,现代凝结物理学以及我们对无序临界点的一般理解,令人惊讶的是,这种猜想从未经过数值测试。在这里,我们报告了统一类别中2DDF的相图和关键性的广泛数字结果。我们在M = 0处找到一条临界线,具有能量依赖性定位长度指数。在很大的能量下,我们的DDF结果与最新的数值结果ν_IQH= 2.56-2.62来自IQHT的模型。但是,在E = 0,我们获得与ν_IQH不相容的2.30-2.36。这一结果挑战了IQHT不同模型之间的猜想关系,并讨论了几种解释。

Two-dimensional (2D) Dirac fermions are a central paradigm of modern condensed matter physics, describing low-energy excitations in graphene, in certain classes of superconductors, and on surfaces of 3D topological insulators. At zero energy E=0, Dirac fermions with mass m are band insulators, with the Chern number jumping by unity at m=0. This observation lead Ludwig et al [Phys. Rev. B 50, 7526 (1994)] to conjecture that the transition in 2D disordered Dirac fermions (DDF) and the integer quantum Hall transition (IQHT) are controlled by the same fixed point and possess the same universal critical properties. Given the far-reaching implications for the emerging field of the quantum anomalous Hall effect, modern condensed matter physics and our general understanding of disordered critical points, it is surprising that this conjecture has never been tested numerically. Here, we report the results of extensive numerics on the phase diagram and criticality of 2D-DDF in the unitary class. We find a critical line at m=0, with energy-dependent localization length exponent. At large energies, our results for the DDF are consistent with state-of-the-art numerical results ν_IQH = 2.56 - 2.62 from models of the IQHT. At E=0 however, we obtain ν_0 =2.30-2.36 incompatible with ν_IQH. This result challenges conjectured relations between different models of the IQHT, and several interpretations are discussed.

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