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Collective non-Hermitian skin effect: point-gap topology and the doublon-holon excitations in non-reciprocal many-body systemsopen access

Authors
Kim, Beom HyunHan, Jae-HoPark, Moon Jip
Issue Date
Mar-2024
Publisher
NATURE PUBLISHING GROUP
Citation
Communications Physics, v.7, no.1, pp 1 - 6
Pages
6
Indexed
SCIE
SCOPUS
Journal Title
Communications Physics
Volume
7
Number
1
Start Page
1
End Page
6
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/195140
DOI
10.1038/s42005-024-01564-2
ISSN
2399-3650
Abstract
Open quantum systems provide a plethora of exotic topological phases of matter that have no Hermitian counterpart. Non-Hermitian skin effect, macroscopic collapse of bulk states to the boundary, has been extensively studied in various experimental platforms. However, it remains an open question whether such topological phases persist in the presence of many-body interactions. Previous studies have shown that the Pauli exclusion principle suppresses the skin effect. In this study, we present a counterexample by demonstrating the presence of the skin effect in doublon-holon excitations. While the ground state of the spin-half Hatano-Nelson model shows no skin effect, the doublon-holon pairs, as its collective excitations, display the many-body skin effect even in strong coupling limit. We establish the robustness of this effect by revealing a bulk-boundary correspondence mediated by the point gap topology within the many-body energy spectrum. Our findings underscore the existence of non-Hermitian topological phases in collective excitations of many-body interacting systems.
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