Impurity-induced counter skin-effect and linear modes in non-Hermitian systems
Nico G. Leumer, Dario Bercioux

TL;DR
This paper analytically studies how impurities affect the non-Hermitian skin effect in the Hatano-Nelson model, revealing a counteracting impurity-induced skin state and extending findings to multi-band systems and quantum walks.
Contribution
It provides an exact analytical solution for impurity effects on the skin effect in non-Hermitian systems, including a novel counter skin-effect phenomenon and its implications.
Findings
Impurity strength can induce a counteracting skin state.
Exact solutions validate the impurity's impact on skin effect.
Counter skin-effect observed in multi-band models.
Abstract
Non-reciprocal lattice systems are among the simplest non-Hermitian systems, exhibiting several key features absent in their Hermitian counterparts. In this study, we investigate the Hatano-Nelson model with impurity and unveil how the impurity influences the intrinsic non-Hermitian skin effect of the system. We present an exact analytical solution to the problem under open and periodic boundary conditions, irrespective of the impurity's position and strength. Numerical simulations thoroughly validate this exact solution. Our analysis reveals a distinctive phenomenon where a specific impurity strength, determined by the non-reciprocal hopping parameters, induces a unique skin state at the impurity site. This impurity state exhibits a skin effect that counterbalances the boundary-induced skin effect, a phenomenon we term the \emph{impurity-induced counter skin-effect}. These findings…
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Taxonomy
TopicsQuantum Mechanics and Non-Hermitian Physics · Quantum chaos and dynamical systems · Nonlinear Photonic Systems
