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Recovery of massless Dirac fermions at charge neutrality in strongly interacting twisted bilayer graphene with disorder

机译:用紊乱的扭曲双层石墨烯的充电中立以充电中立性的无抽炎迪米米恢复

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摘要

Stacking two graphene layers twisted by the magic angle θ≈1.1° generates flat energy bands, which in turn catalyzes various strongly correlated phenomena depending on tilling and sample details. At charge neutrality, transport measurements reveal superficially mundane semimetallicity (as expected when correlations are weak) in some samples yet robust insulation in others. We propose that the interplay between interactions and disorder admits either behavior, even when the system is strongly correlated and locally gapped. Specifically, we argue that strong interactions supplemented by weak, smooth disorder stabilize a network of gapped quantum valley Hall domains with spatially varying Chern numbers determined by the disorder landscape-even when an entirely different order is favored in the clean limit. Within this scenario, sufficiently small samples that realize a single domain display insulating transport characteristics. Conversely, multidomain samples exhibit re-emergent massless Dirac fermions formed by gapless domain-wall modes, yielding semimetallic behavior except on the ultralong scales at which localization becomes visible. We discuss experimental tests of this proposal via local probes and transport. Our results highlight the crucial role that randomness can play in ground-state selection of twisted heterostructures. an observation that we expect to have further ramifications at other fillings.
机译:堆叠由魔角θ≈1.1°产生平能带,这反过来催化取决于耕耘和样本细节上的各种强相关现象扭曲两个石墨烯层。在电中性,运输测量显示表面上世俗semimetallicity别人而强大的绝缘部分样本(如预期时,相关性弱)。我们建议,相互作用和疾病之间的相互承认任一行为,即使系统被强烈的相关性和本地跳空。具体而言,我们认为通过弱补充该强相互作用,平滑障碍稳定跳空量子霍尔谷域的网络与由横长,即使是完全不同的顺序在洁净限制是有利的病症来确定空间上变化的陈号码。在这个方案中,足够小的样本即实现单结构域显示绝缘传输特性。相反地​​,多畴样品显示由无间隙的畴壁模式,产生除外在该定位变得可见的超长鳞半金属行为形成重新出现的无质量狄拉克费米子。我们讨论通过本地的探头和运输这个建议的实验测试。我们的研究结果强调,随机性可以扭曲异质的基态的选择起到了至关重要的作用。观察,我们期望有其他馅料进一步的后果。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第12期|125138.1-125138.29|共29页
  • 作者

    Alex Thomson; Jason Alicea;

  • 作者单位

    Institute for Quantum Information and Matter California Institute of Technology Pasadena California 91125 USA Walter Burke Institute for Theoretical Physics California Institute of Technology Pasadena California 91125 USA and Department of Physics California Institute of Technology Pasadena California 91125 USA;

    Institute for Quantum Information and Matter California Institute of Technology Pasadena California 91125 USA Walter Burke Institute for Theoretical Physics California Institute of Technology Pasadena California 91125 USA and Department of Physics California Institute of Technology Pasadena California 91125 USA;

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