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Dynamics of Renyi entanglement entropy in local quantum circuits with charge conservation
Published 3 Feb 2019 in quant-ph, cond-mat.stat-mech, cond-mat.str-el, and hep-th | (1902.00977v1)
Abstract: In local quantum circuits with charge conservation, we initialize the system in random product states and study the dynamics of the Renyi entanglement entropy $R_\alpha$. We rigorously prove that $R_\alpha$ with Renyi index $\alpha>1$ at time $t$ is $\le O(\sqrt{t\ln t})$ if the transport of charges is diffusive. Very recent numerical results of Rakovszky et al. show that this upper bound is saturated (up to the sub-logarithmic correction) in random local quantum circuits with charge conservation.
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