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- W2036346714 abstract "An important and incompletely answered question is whether a closed quantum system of many interacting particles can be localized by disorder. The time evolution of simple (unentangled) initial states is studied numerically for a system of interacting spinless fermions in one dimension described by the random-field $XXZ$ Hamiltonian. Interactions induce a dramatic change in the propagation of entanglement and a smaller change in the propagation of particles. For even weak interactions, when the system is thought to be in a many-body localized phase, entanglement shows neither localized nor diffusive behavior but grows without limit in an infinite system: interactions act as a singular perturbation on the localized state with no interactions. The significance for proposed atomic experiments is that local measurements will show a large but nonthermal entropy in the many-body localized state. This entropy develops slowly (approximately logarithmically) over a diverging time scale as in glassy systems." @default.
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- W2036346714 date "2012-07-03" @default.
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- W2036346714 title "Unbounded Growth of Entanglement in Models of Many-Body Localization" @default.
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- W2036346714 doi "https://doi.org/10.1103/physrevlett.109.017202" @default.
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