Observation of universal dissipative dynamics in strongly correlated quantum gas

Fuente: arXiv
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Hauptverfasser: Zhao, Yajuan, Tian, Ye, Ye, Jilai, Wu, Yue, Zhao, Zihan, Chi, Zhihao, Tian, Tian, Yao, Hepeng, Hu, Jiazhong, Chen, Yu, Chen, Wenlan
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Veröffentlicht: 2023
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author Zhao, Yajuan
Tian, Ye
Ye, Jilai
Wu, Yue
Zhao, Zihan
Chi, Zhihao
Tian, Tian
Yao, Hepeng
Hu, Jiazhong
Chen, Yu
Chen, Wenlan
author_facet Zhao, Yajuan
Tian, Ye
Ye, Jilai
Wu, Yue
Zhao, Zihan
Chi, Zhihao
Tian, Tian
Yao, Hepeng
Hu, Jiazhong
Chen, Yu
Chen, Wenlan
contents Dissipation is unavoidable in quantum systems. It usually induces decoherences and changes quantum correlations. To access the information of strongly correlated quantum matters, one has to overcome or suppress dissipation to extract out the underlying quantum phenomena. However, here we find an opposite effect that dissipation can be utilized as a powerful tool to probe the intrinsic correlations of quantum many-body systems. Applying highly-controllable dissipation in ultracold atomic systems, we observe a universal dissipative dynamics in strongly correlated one-dimensional quantum gases. The total particle number of this system follows a universal stretched-exponential decay, and the stretched exponent measures the anomalous dimension of the spectral function, a critical exponent characterizing strong quantum fluctuations of this system. This method could have broad applications in detecting strongly correlated features, including spin-charge separations and Fermi arcs in quantum materials.
format Preprint
id arxiv_https___arxiv_org_abs_2309_10257
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Observation of universal dissipative dynamics in strongly correlated quantum gas
Zhao, Yajuan
Tian, Ye
Ye, Jilai
Wu, Yue
Zhao, Zihan
Chi, Zhihao
Tian, Tian
Yao, Hepeng
Hu, Jiazhong
Chen, Yu
Chen, Wenlan
Quantum Gases
Statistical Mechanics
Strongly Correlated Electrons
Atomic Physics
Quantum Physics
Dissipation is unavoidable in quantum systems. It usually induces decoherences and changes quantum correlations. To access the information of strongly correlated quantum matters, one has to overcome or suppress dissipation to extract out the underlying quantum phenomena. However, here we find an opposite effect that dissipation can be utilized as a powerful tool to probe the intrinsic correlations of quantum many-body systems. Applying highly-controllable dissipation in ultracold atomic systems, we observe a universal dissipative dynamics in strongly correlated one-dimensional quantum gases. The total particle number of this system follows a universal stretched-exponential decay, and the stretched exponent measures the anomalous dimension of the spectral function, a critical exponent characterizing strong quantum fluctuations of this system. This method could have broad applications in detecting strongly correlated features, including spin-charge separations and Fermi arcs in quantum materials.
title Observation of universal dissipative dynamics in strongly correlated quantum gas
topic Quantum Gases
Statistical Mechanics
Strongly Correlated Electrons
Atomic Physics
Quantum Physics
url https://arxiv.org/abs/2309.10257