CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES |
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Localization Dynamics at the Exceptional Point of Non-Hermitian Creutz Ladder |
S. M. Zhang†, T. Y. He†, and L. Jin* |
School of Physics, Nankai University, Tianjin 300071, China |
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Cite this article: |
S. M. Zhang, T. Y. He, and L. Jin 2024 Chin. Phys. Lett. 41 027201 |
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Abstract We propose a quasi-one-dimensional non-Hermitian Creutz ladder with an entirely flat spectrum by introducing alternating gain and loss components while maintaining inversion symmetry. Destructive interference generates a flat spectrum at the exceptional point, where the Creutz ladder maintains coalesced and degenerate eigenvalues with compact localized states distributed in a single plaquette. All excitations are completely confined within the localization area, unaffected by gain and loss. Single-site excitations exhibit nonunitary dynamics with intensities increasing due to level coalescence, while multiple-site excitations may display oscillating or constant intensities at the exceptional point. These results provide insights into the fascinating dynamics of non-Hermitian localization, where level coalescence and degeneracy coexist at the exceptional point.
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Received: 17 November 2023
Published: 07 February 2024
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PACS: |
72.15.Rn
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(Localization effects (Anderson or weak localization))
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03.65.Vf
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(Phases: geometric; dynamic or topological)
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42.25.Hz
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(Interference)
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