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Exploring local quantum many-body relaxation by atoms in optical superlattices
Journal article   Peer reviewed

Exploring local quantum many-body relaxation by atoms in optical superlattices

M. Cramer, A. Flesch, I. P. McCulloch, U. Schollwoeck and J. Eisert
Physical review letters, Vol.101(6), p.063001
08/08/2008
PMID: 18764451

Abstract

Physical Sciences Physics Physics, Multidisciplinary Science & Technology
We establish a setting-atoms in optical superlattices with period 2-in which one can experimentally probe signatures of the process of local relaxation and apparent thermalization in nonequilibrium dynamics without the need of addressing single sites. This opens up a way to explore the convergence of subsystems to maximum entropy states in quenched quantum many-body systems with present technology. Remarkably, the emergence of thermal states does not follow from a coupling to an environment but is a result of the complex nonequilibrium dynamics in closed systems. We explore ways of measuring the relevant signatures of thermalization in this analogue quantum simulation of a relaxation process, exploiting the possibilities offered by optical superlattices.

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