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Numerical survey of the tunable condensate shape and scaling laws in pair-factorized steady states

Published 4 Jun 2015 in cond-mat.stat-mech | (1506.01641v1)

Abstract: We numerically survey predictions on the shapes and scaling laws of particle condensates that emerge as a result of spontaneous symmetry breaking in pair- factorized steady states of a stochastic transport process. The specific model consists of indistinguishable particles that stochastically hop between sites controlled by a tunable potential. We identify the different condensate shapes within their respective parameter regimes as well as determine precisely the condensate width scaling.

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