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Observation of non-Hermitian topological Anderson insulator in quantum dynamics
by
Li, Tianyu
, Xue, Peng
, Yi, Wei
, Lin, Quan
, Xiao, Lei
, Wang, Kunkun
in
639/766/119/2792/4128
/ 639/766/119/2792/4129
/ 639/766/400/3925
/ Anderson localization
/ Competition
/ Eigenvectors
/ Humanities and Social Sciences
/ Liapunov exponents
/ Localization
/ multidisciplinary
/ Open systems
/ Phase transitions
/ Photonics
/ Quantum theory
/ Science
/ Science (multidisciplinary)
/ Skin effect
/ Topology
2022
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Observation of non-Hermitian topological Anderson insulator in quantum dynamics
by
Li, Tianyu
, Xue, Peng
, Yi, Wei
, Lin, Quan
, Xiao, Lei
, Wang, Kunkun
in
639/766/119/2792/4128
/ 639/766/119/2792/4129
/ 639/766/400/3925
/ Anderson localization
/ Competition
/ Eigenvectors
/ Humanities and Social Sciences
/ Liapunov exponents
/ Localization
/ multidisciplinary
/ Open systems
/ Phase transitions
/ Photonics
/ Quantum theory
/ Science
/ Science (multidisciplinary)
/ Skin effect
/ Topology
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Observation of non-Hermitian topological Anderson insulator in quantum dynamics
by
Li, Tianyu
, Xue, Peng
, Yi, Wei
, Lin, Quan
, Xiao, Lei
, Wang, Kunkun
in
639/766/119/2792/4128
/ 639/766/119/2792/4129
/ 639/766/400/3925
/ Anderson localization
/ Competition
/ Eigenvectors
/ Humanities and Social Sciences
/ Liapunov exponents
/ Localization
/ multidisciplinary
/ Open systems
/ Phase transitions
/ Photonics
/ Quantum theory
/ Science
/ Science (multidisciplinary)
/ Skin effect
/ Topology
2022
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Observation of non-Hermitian topological Anderson insulator in quantum dynamics
Journal Article
Observation of non-Hermitian topological Anderson insulator in quantum dynamics
2022
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Overview
Disorder and non-Hermiticity dramatically impact the topological and localization properties of a quantum system, giving rise to intriguing quantum states of matter. The rich interplay of disorder, non-Hermiticity, and topology is epitomized by the recently proposed non-Hermitian topological Anderson insulator that hosts a plethora of exotic phenomena. Here we experimentally simulate the non-Hermitian topological Anderson insulator using disordered photonic quantum walks, and characterize its localization and topological properties. In particular, we focus on the competition between Anderson localization induced by random disorder, and the non-Hermitian skin effect under which all eigenstates are squeezed toward the boundary. The two distinct localization mechanisms prompt a non-monotonous change in profile of the Lyapunov exponent, which we experimentally reveal through dynamic observables. We then probe the disorder-induced topological phase transitions, and demonstrate their biorthogonal criticality. Our experiment further advances the frontier of synthetic topology in open systems.
The authors report an experimental observation of a non-Hermitian topological Anderson insulator using photonic quantum walks, revealing the competition between Anderson localization induced by random disorder and the non-Hermitian skin effect.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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