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Asymptotics of repeated interaction quantum systems
Authors:Laurent Bruneau  Marco Merkli
Affiliation:a CPT-CNRS, UMR 6207, Université du Sud, Toulon-Var, BP 20132, F-83957 La Garde Cedex, France
b Institut Fourier, UMR 5582, CNRS-Université de Grenoble I, BP 74, 38402 Saint-Martin d'Hères, France
c Laboratoire de Physique et Modélisation des Milieux Condensés, UMR 5493, CNRS-Université de Grenoble I, BP 166, 38042 Grenoble, France
d Department of Mathematics and Statistics, McGill University, 805 Sherbrooke Street West, Montreal, QC, H3A 2K6 Canada
Abstract:A quantum system S interacts in a successive way with elements E of a chain of identical independent quantum subsystems. Each interaction lasts for a duration τ and is governed by a fixed coupling between S and E. We show that the system, initially in any state close to a reference state, approaches a repeated interaction asymptotic state in the limit of large times. This state is τ-periodic in time and does not depend on the initial state. If the reference state is chosen so that S and E are individually in equilibrium at positive temperatures, then the repeated interaction asymptotic state satisfies an average second law of thermodynamics.
Keywords:Non-equilibrium quantum theory   Quantum ergodic theory     mmlsi7"   onclick="  submitCitation('/science?_ob=MathURL&  _method=retrieve&  _eid=1-s2.0-S0022123606000632&  _mathId=si7.gif&  _pii=S0022123606000632&  _issn=00221236&  _acct=C000054348&  _version=1&  _userid=3837164&  md5=e06470b66c631d985cddcd9648b389fd')"   style="  cursor:pointer  "   alt="  Click to view the MathML source"   title="  Click to view the MathML source"  >  formulatext"   title="  click to view the MathML source"  >W&lowast  -dynamical systems   Time dependent interaction   Thermal quantum field   Thermal reservoir   Entropy production   2nd law of thermodynamics   One-Atom Maser
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