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首页> 外文期刊>Advances in Materials Physics and Chemistry >Strong Electric Field in 2D Graphene: The Integer Quantum Hall Regime from a Different (Many-Body) Perspective
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Strong Electric Field in 2D Graphene: The Integer Quantum Hall Regime from a Different (Many-Body) Perspective

机译:二维石墨烯中的强电场:从不同角度(多体)的整数量子霍尔态

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We investigate the emerging consequences of an applied strong in-plane electric field on a macroscopically large graphene sheet subjected to a perpendicular magnetic field, by determining in exact analytical form various many-body thermodynamic properties and the Hall coefficient. The results suggest exotic possibilities that necessitate very careful experimental investigation. In this alternate form of Quantum Hall Effect, non-linear phenomena related to the global magnetization, energy and Hall conductivity (the latter depending on the strengths of magnetic B- and electric E-fields) emerge without using perturbation methods, to all orders of E-field and B-field strengths. Interestingly enough, when the value of the electric field is sufficiently strong, fractional quantization also emerges, whose topological stability has to be verified.
机译:我们通过以精确的分析形式确定各种多体热力学性质和霍尔系数,研究了施加垂直磁场的宏观大石墨烯片材上施加强平面内电场的新结果。结果表明异国情调的可能性,需要非常仔细的实验​​研究。在这种量子霍尔效应的替代形式中,与整体磁化强度,能量和霍尔电导率(后者取决于磁场B场和电场的强度)有关的非线性现象在没有使用扰动方法的情况下出现到了所有阶。电子领域和B领域的优势。有趣的是,当电场值足够强时,也会出现分数量化,因此必须验证其拓扑稳定性。

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