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Localization-Delocalization Transitions in Non-Hermitian Aharonov-Bohm Cages

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arxiv 2403.07459 v2 pith:NO2RS2HP submitted 2024-03-12 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords disordernhsenon-hermitiananti-symmetricinterplaylocalizationlocalization-delocalizationpoint-gap
verification ladder T0 review T1 audit T2 compute T3 formal
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A unique feature of non-Hermitian systems is the extreme sensitivity of the eigenspectrum to boundary conditions with the emergence of the non-Hermitian skin effect (NHSE). A NHSE originates from the point-gap topology of complex eigenspectrum, where an extensive number of eigenstates are anomalously localized at the boundary driven by nonreciprocal dissipation. Two different approaches to create localization are disorder and flat-band spectrum, and their interplay can lead to the anomalous inverse Anderson localization, where the Bernoulli anti-symmetric disorder induce mobility in a full-flat band system in the presence of Aharonov-Bohm (AB) Cage. In this work, we study the localization-delocalization transitions due to the interplay of the point-gap topology, flat band and correlated disorder in the one-dimensional rhombic lattice, where both its Hermitian and non-Hermitian structures show AB cage in the presence of magnetic flux. Although it remains the coexistence of localization and delocalization for the Hermitian rhombic lattice in the presence of the random anti-symmetric disorder, it surprisingly becomes complete delocalization, accompanied by the emergence of NHSE. To further study the effects from the Bernoulli anti-symmetric disorder, we found the similar NHSE due to the interplay of the point-gap topology, correlated disorder and flat bands. Our anomalous localization-delocalization property can be experimentally tested in the classical physical platform, such as electrical circuit.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Observation of Impurity-Induced Scale-Free Localization in a Disordered Non-Hermitian Electrical Circuit

    cond-mat.dis-nn 2025-01 conditional novelty 6.0 of 10

    A disordered non-Hermitian electrical circuit with a single impurity is reported to show scale-free eigenstate localization whose direction is set by the impurity, opposite to the bulk hopping direction.

  2. Interaction-Induced Second-Order Skin Effect

    quant-ph 2025-01 accept novelty 6.0 of 10

    Interaction-induced corner localization of doublons in a 2D non-Hermitian Bose-Hubbard model constitutes a second-order skin effect with corner-mode count growing linearly with system size.

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