Directional charging of topological quantum energy-storage devices driven by the non-Hermitian skin effect
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The paper explicitly applies the non-Hermitian skin effect to a topological quantum energy-storage device, directly matching non-Bloch localization and non-Hermitian boundary phenomena.
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Author(s): Yanlong Chang, Xiaoli Wang, and Hongrong Li The skin effect is a phenomenon characterized by the exponential localization of wave functions at a boundary in non-Hermitian topological systems, demonstrating potential applications in the field of quantum information. Here we explore its application in optimizing the performance of quantum energ… [Phys. Rev. A 114, 023712] Published Thu Aug 13, 2026