论文标题

金属状态中扭曲双层石墨烯的载体传输理论

Carrier transport theory for twisted bilayer graphene in the metallic regime

论文作者

Sharma, Gargee, Yudhistira, Indra, Chakraborty, Nilotpal, Ho, Derek Y. H., Fuhrer, Michael S., Vignale, Giovanni, Adam, Shaffique

论文摘要

了解扭曲的双层石墨烯近乎魔法角的正常金属运输至关重要,因为它可以洞悉导致观察到的密切相关的绝缘和超导阶段的机制。在这里,我们在扭曲的双层石墨烯中提供了一个严格的语音传输理论,该石墨烯描述了其在电阻率中的异常特征(包括具有电子密度,温度和扭曲角的变化),显示出与最近实验的良好定量一致性。我们将其与我们显示的替代Planckian耗散机制与可用的实验数据不相容。对电子 - 光子散射的准确处理需要我们远远超出通常的处理,包括侧带和内部的过程,考虑到电子 - 音波矩阵元件的有限温度动态筛选,并超越线性狄拉克分散体。除了解释当前可用的实验数据中的观察结果外,我们还做出了可以在正在进行的实验中测试的具体预测。

Understanding the normal-metal state transport in twisted bilayer graphene near magic angle is of fundamental importance as it provides insights into the mechanisms responsible for the observed strongly correlated insulating and superconducting phases. Here we provide a rigorous theory for phonon-dominated transport in twisted bilayer graphene describing its unusual signatures in the resistivity (including the variation with electron density, temperature, and twist angle) showing good quantitative agreement with recent experiments. We contrast this with the alternative Planckian dissipation mechanism that we show is incompatible with available experimental data. An accurate treatment of the electron-phonon scattering requires us to go well beyond the usual treatment, including both interband and intraband processes, considering the finite-temperature dynamical screening of the electron-phonon matrix element, and going beyond the linear Dirac dispersion. In addition to explaining the observations in currently available experimental data, we make concrete predictions that can be tested in ongoing experiments.

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