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- W2920957100 abstract "In the previous works, we proposed atomic quantum simulations of the U(1) gauge-Higgs model by ultra-cold Bose gases. By studying extended Bose-Hubbard models (EBHMs) including long-range repulsions, we clarified the locations of the confinement, Coulomb and Higgs phases. In this paper, we study the EBHM with nearest-neighbor repulsions in one and two dimensions at large fillings by the Gutzwiller variational method. We obtain phase diagrams and investigate dynamical behavior of electric flux from the gauge-theoretical point of view. We also study if the system exhibits glassy quantum dynamics in the absence and presence of quenched disorder. We explain that the obtained results have a natural interpretation in the gauge theory framework. Our results suggest important perspective on many-body localization in strongly-correlated systems. They are also closely related to anomalously slow dynamics observed by recent experiments performed on Rydberg atom chain, and our study indicates existence of similar phenomenon in two-dimensional space." @default.
- W2920957100 created "2019-03-22" @default.
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- W2920957100 date "2019-07-26" @default.
- W2920957100 modified "2023-09-25" @default.
- W2920957100 title "Glassy dynamics from quark confinement: Atomic quantum simulation of the gauge-Higgs model on a lattice" @default.
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- W2920957100 doi "https://doi.org/10.1103/physreva.100.013629" @default.
- W2920957100 hasPublicationYear "2019" @default.
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