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Orbital magnetism and transport phenomena in two-dimensional Dirac fermions in a weak magnetic field

机译:二维狄拉克费米子在弱磁场中的轨道磁和输运现象

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摘要

We discuss the orbital magnetism and the Hall effect in a weak magnetic field in two-dimensional Dirac fermion systems with an energy gap. This model is related to the graphene sheet, zero-gap organic conductors, and the d-density-wave state of cuprates. We found strong diamagnetism and anomalous Hall conductivity even in gapped systems. We also discuss the relation between results of the weak-magnetic-field formalism and those in a finite magnetic field with Landau quantization.
机译:我们讨论了带能隙的二维狄拉克费米子系统在弱磁场中的轨道磁性和霍尔效应。该模型与石墨烯片,零间隙有机导体以及铜酸盐的d密度波状态有关。我们发现即使在有缝隙的系统中,也具有很强的反磁性和霍尔电导率异常。我们还讨论了用Landau量化弱磁场形式主义的结果​​与有限磁场中的结果之间的关系。

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