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Twisted topology and Bipolar Non-Hermitian Skin Effect induced by long-range asymmetric coupling

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arxiv 2312.12780 v1 pith:ZBEPR3UI submitted 2023-12-20 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords energynhsecomplexwindingbipolarindexlong-rangenon-hermitian
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We investigate the twisted topology of the complex eigenspectrum of a one-dimensional non-Hermitian system under the influence of long-range unidirectional coupling. Unlike the complex energy spectrum of the conventional Hatano-Nelson chain, which takes the form of a single loop with a topological winding index of a definite sign, the introduction of long-range unidirectional hopping results in the creation of multiple twisted loops. These twisted loops exhibit opposite signs of the topological winding index, which correlate to alternating clockwise and anticlockwise energy windings. The simultaneous presence of both signs of the winding index translates into a bipolar non-Hermitian skin effect (NHSE), which challenges the conventional wisdom that the NHSE localization is dependent on the direction of the dominant nearest-neighbor interactions. In this bipolar NHSE, the exponents of the complex energy eigenvectors corresponding to clockwise and anti-clockwise windings, lie inside and outside of the complex unit circle, respectively. Interestingly, at the intersections of oppositely oriented energy loops where the sign of the topological winding index flips, the energy becomes real-valued, leading to a suppression of the NHSE. This marks the emergence of Bloch-like contact points, where both the bipolar NHSE and the traditional NHSE vanish. Based on the non-Hermitian model we provide analytical insights into the effects of long-range unidirectional coupling to the winding topology of its complex energy spectra and their broader implications for the field of condensed matter physics.

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  1. Reconfigurable Defect States in Non-Hermitian Topolectrical Chains with Gain and Loss

    cond-mat.mes-hall 2025-05 conditional novelty 6.0 of 10

    In a non-Hermitian SSH chain with non-reciprocal hopping, staggered gain/loss tunes defect-state localization between the defect site, the chain edges, or suppression.

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