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Stark many-body localization: Evidence for Hilbert-space shattering

Published 26 Dec 2020 in cond-mat.dis-nn, cond-mat.quant-gas, and cond-mat.str-el | (2012.13722v2)

Abstract: We study the dynamics of an interacting quantum spin chain under the application of a linearly increasing field. This model exhibits a type of localization known as Stark many-body localization. The dynamics shows a strong dependence on the initial conditions, indicating that the system violates the conventional ("strong") eigenstate thermalization hypothesis at any finite gradient of the field. This is contrary to reports of a numerically observed ergodic phase. Therefore, the localization is crucially distinct from disorder-driven many-body localization, in agreement with recent predictions on the basis of localization via Hilbert-space shattering.

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