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Electronic properties of graphite in tilted magnetic fields

机译:倾斜磁场石墨的电子特性

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The minimal nearest-neighbor tight-binding model with the Peierls substitution is employed to describe the electronic structure of Bernal-stacked graphite subject to tilted magnetic fields. We show that while the presence of the in-plane component of the magnetic field has a negligible effect on the Landau level structure at the K point of the graphite Brillouin zone, at the H point it leads to the experimentally observable splitting of Landau levels which grows approximately linearly with the in-plane field intensity.
机译:采用PEIERLS替换的最小最近邻紧密绑定模型来描述受倾斜磁场的伯纳堆叠石墨的电子结构。我们认为,虽然磁场的面内部件的存在对石墨布里渊区的K点的LANDAU水平结构具有可忽略不计的影响,但它导致了实验观察到的Landau水平分裂大致线性地与面内场强度大致线性。

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