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首页> 外文期刊>Journal of Physics. Condensed Matter >Topological invariant for the orbital spin of the electrons in the quantum Hall regime and Hall viscosity
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Topological invariant for the orbital spin of the electrons in the quantum Hall regime and Hall viscosity

机译:电子在量子霍尔态和霍尔粘度中的轨道自旋的拓扑不变量

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Hall conductance of noninteracting fermions filling a certain number of Landau levels can be written as a topological invariant. A particular version of this invariant when expressed in terms of the single particle Green's functions directly generalizes to cases when interactions are present including those of fractional Hall states, although in those cases this invariant no longer corresponds to Hall conductance. We argue that when evaluated for both integer and fractional Hall states this invariant gives twice the total orbital spin of fermions which in turn is closely related to the Hall viscosity, a quantity characterizing the integer and fractional Hall states which recently received substantial attention in the literature.
机译:填充一定数量的Landau水平的非相互作用费米子的霍尔电导可以写成拓扑不变式。当用单粒子格林函数表示时,该不变量的特定形式直接推广到存在相互作用的情况,包括分数霍耳状态的相互作用,尽管在这些情况下,该不变量不再对应于霍尔电导。我们认为,当对整数和分数霍耳态进行评估时,该不变量给出费米子总轨道自旋的两倍,这又与霍耳粘度密切相关,这是表征整数和分数霍耳态的量,最近在文献中受到了广泛关注。

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