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Interplay of non-Hermitian skin effects and Anderson localization in non-reciprocal quasiperiodic lattices

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arxiv 1901.09399 v1 pith:5J5HGJJX submitted 2019-01-27 cond-mat.mes-hall physics.opticsquant-ph

classification cond-mat.mes-hallphysics.opticsquant-ph
keywords non-reciprocalinterplaytextittransitionandersonboundaryconditionseffect
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Non-Hermiticity from non-reciprocal hoppings has been shown recently to demonstrate the non-Hermitian skin effect (NHSE) under open boundary conditions (OBCs). Here we study the interplay of this effect and the Anderson localization in a \textit{non-reciprocal} quasiperiodic lattice, dubbed non-reciprocal Aubry-Andr\'{e} model, and a \textit{rescaled} transition point is exactly proved. The non-reciprocity can induce not only the NHSE, but also the asymmetry in localized states with two Lyapunov exponents for both sides. Meanwhile, this transition is also topological, characterized by a winding number associated with the complex eigenenergies under periodic boundary conditions (PBCs), establishing a \textit{bulk-bulk} correspondence. This interplay can be realized by an elaborately designed electronic circuit with only linear passive RLC devices instead of elusive non-reciprocal ones, where the transport of a continuous wave undergoes a transition between insulating and amplifying. This initiative scheme can be immediately applied in experiments to other non-reciprocal models, and will definitely inspires the study of interplay of NHSEs and more other quantum/topological phenomena.

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

  1. Magnetic field Controlled Anderson Delocalization in a Spinful Non-Hermitian Chain

    cond-mat.mes-hall 2026-03 conditional novelty 6.0 of 10

    Under anti-symmetrically correlated disorder, a Zeeman field suppresses effective disorder strength and drives Anderson delocalization into NHSE in a spinful Hatano-Nelson chain.

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