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首页> 外文期刊>Physics Letters, A >Symmetry protected topological charge in symmetry broken phase:Spin-Chern, spin-valley-Chern and mirror-Chern numbers
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Symmetry protected topological charge in symmetry broken phase:Spin-Chern, spin-valley-Chern and mirror-Chern numbers

机译:对称破坏相中的对称保护拓扑电荷:Spin-Chern,自旋谷-Chern和镜像-Chern数

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摘要

The Chern number is a genuine topological number. On the other hand, a symmetry protected topological (SPT) charge is a topological number only when a symmetry exists. We propose a formula for the SPT charge as a derivative of the Chern number in terms of the Green function in such a way that it is valid and related to the associated Hall current even when the symmetry is broken. We estimate the amount of deviation from the quantized value as a function of the strength of the broken symmetry. We present two examples. First, we consider Dirac electrons with the spin–orbit coupling on honeycomb lattice, where the SPT charges are given by the spin-Chern, valley-Chern and spin-valley-Chern numbers. Though the spin-Chern charge is not quantized in the presence of the Rashba coupling, the deviation is estimated to be 10~(-7) in the case of silicene, a silicon cousin of graphene. Second, we analyze the effect of the mirror-symmetry breaking of the mirror-Chern number in a thin-film of topological crystalline insulator.
机译:陈数是一个真正的拓扑数。另一方面,仅当对称性存在时,对称保护拓扑(SPT)电荷才是拓扑数。我们提出了一种SPT电荷的公式,以Green函数的形式表示Chern数的导数,即使对称性被破坏,它也有效并与相关的霍尔电流相关。我们估计与量化值的偏差量,作为对称性破坏强度的函数。我们给出两个例子。首先,我们考虑在蜂窝晶格上具有自旋-轨道耦合的Dirac电子,其中SPT电荷由自旋Chern,山谷Chern和自旋谷Chern数给出。尽管在存在Rashba耦合的情况下无法对自旋Chern电荷进行量化,但对于硅烯(石墨烯的硅表亲)而言,其偏差估计为10〜(-7)。其次,我们分析了拓扑晶体绝缘体薄膜中镜像-Chern数的镜像对称破坏的影响。

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