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Superuniversality of topological quantum phase transition and global phase diagram of dirty topological systems in three dimensions

机译:三维量子量子相变的超通用性和脏拓扑系统的整体相图

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The quantum phase transition between two clean, noninteracting topologically distinct gapped states in three dimensions is governed by a massless Dirac fermion fixed point, irrespective of the underlying symmetry class, and this constitutes a remarkably simple example of superuniversality. For a sufficiently weak disorder strength, we show that the massless Dirac fixed point is at the heart of the robustness of superuniversality. We establish this by considering both perturbative and nonperturbative effects of disorder. The superuniversality breaks down at a critical strength of disorder, beyond which the topologically distinct localized phases become separated by a delocalized diffusive phase. In the global phase diagram, the disorder controlled fixed point where superuniversality is lost, serves as a multicritical point, where the delocalized diffusive and two topologically distinct localized phases meet and the nature of the localization-delocalization transition depends on the underlying symmetry class. Based on these features, we construct the global phase diagrams of noninteracting, dirty topological systems in three dimensions. We also establish a similar structure of the phase diagram and the superuniversality for weak disorder in higher spatial dimensions. By noting that 1/r~2 power-law correlated disorder acts as a marginal perturbation for massless Dirac fermions in any spatial dimension d, we have established a general renormalization group framework for addressing disorder driven critical phenomena for fixed spatial dimension d > 2.
机译:在三个维度上,两个干净的,不相互作用的拓扑不同的带隙态之间的量子相变由无质量的狄拉克费米子固定点控制,而与基本的对称性类别无关,这是一个超简单的非常简单的例子。对于足够弱的无序强度,我们证明了无质量的狄拉克不动点是超级大学鲁棒性的核心。我们通过考虑障碍的摄动和非摄动效应来建立这一点。超通用性在无序的临界强度下分解,超过该极限后,拓扑上不同的局部相将被局部分散的扩散相分隔。在全局相图中,失去了超级通用性的无序控制固定点用作多临界点,在该点上,散布的扩散相和两个拓扑上不同的局部相相遇,并且局部-离域过渡的性质取决于基本的对称性类。基于这些特征,我们在三个维度上构建了非交互,脏拓扑系统的全局相图。我们还建立了相图的类似结构,并在较高的空间维度上为弱无序建立了超级大学。通过注意到1 / r〜2幂律相关的无序行为对任何空间维数d的无质量狄拉克费米子都具有边际扰动,我们建立了一个通用的重整化组框架,用于解决固定空间维数d> 2的无序驱动的临界现象。

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  • 来源
    《Physical review 》 |2017年第7期| 075131.1-075131.21| 共21页
  • 作者单位

    Condensed Matter Theory Center and Joint Quantum Institute, Department of Physics, University of Maryland,College Park, Maryland 20742-4111, USA;

    Department of Physics and Astronomy, University of California Los Angeles, Los Angeles, California 90095-1547, USA;

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