非厄米Su-Schrieffer-Heeger链的边缘态和趋肤效应相关的电子输运性质

None Yang Yan-Li, None Duan Zhi-Lei, None Xue Hai-Bin
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摘要

在非互反的Su-Schrieffer-Heeger (SSH)链中,电子在细胞内的跳跃幅度取决于其跳跃方向。因此,非厄米SSH链具有非平凡拓扑边缘状态和非厄米集肤效应。然而,如何检测非平凡拓扑边缘状态和非厄米集肤效应已成为非厄米物理中的一个重要课题。本文研究了非厄米原子链的非平凡拓扑边缘态和非厄米原子链的非厄米集肤效应与它们在零能量附近的电子输运性质的关系。结果表明,当电子在零能量附近的透射概率峰值远小于1时,非厄米SSH链具有左非厄米集肤效应;而在零能级附近的能量远大于1,非厄米SSH链具有右非厄米集肤效应。特别是,在非平凡拓扑边缘状态区域,非厄米SSH链的趋肤效应可以进一步增强。此外,随着非厄米SSH链与左右导联之间的电子隧穿耦合幅值的增加,从弱耦合区到强耦合区,在零能量附近反射概率的下降数将从2变为0。因此,这些结果在理论上为检测非厄米SSH链的非平凡拓扑边缘状态和非厄米skin效应类型提供了一种替代方案。
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Edge states and skin effect dependent electron transport properties of a non-Hermitian Su-Schrieffer-Heeger chain
In the non-reciprocal Su-Schrieffer-Heeger (SSH) chain, the hopping amplitude of an electron in the intra-cell depends on its hopping direction. Consequently, the non-Hermitian SSH chain has both non-trivial topological edge states and non-Hermitian skin effect. However, how to detect the non-trivial topological edge states and non-Hermitian skin effect have become an important topics in non-Hermitian physics. In this paper, we have studied the dependences of the non-trivial topological edge states and the non-Hermitian skin effect of non-Hermitian SSH chain on their electron transport properties in the vicinity of the zero energy. It is demonstrated that when the peak value of the electron transmission probability in the vicinity of the zero energy is much smaller than 1, the non-Hermitian SSH chain has a left-non-Hermitian skin effect; while that in the vicinity of the zero energy is much larger than 1, the non-Hermitian SSH chain has a right-non-Hermitian skin effect. In particular, the skin effect of non-Hermitian SSH chain can be further enhanced in the region of non-trivial topological edge states. Moreover, with increasing the electron tunneling coupling amplitudes between the non-Hermitian SSH chain and the left and right leads from the weak coupling regime to the strong coupling one, the number of the dips of reflection probability in the vicinity of the zero energy will change from two to zero. Therefore, these results theoretically provide an alternative scheme for detecting non-trivial topological edge states and non-Hermitian skin effect types of the non-Hermitian SSH chain.
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