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      Dynamics of a Quantum Phase Transition

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          Abstract

          We present two approaches to the dynamics of a quench-induced phase transition in quantum Ising model. The first one retraces steps of the standard approach to thermodynamic second order phase transitions in the quantum setting. The second one is purely quantum, based on the Landau-Zener formula for transition probabilities in avoided level crossings. We show that the two approaches yield compatible results for the scaling of the defect density with the quench rate. We exhibit similarities between them, and comment on the insights they give into dynamics of quantum phase transitions.

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          Journal
          21 March 2005
          2006-02-14
          Article
          10.1103/PhysRevLett.95.105701
          cond-mat/0503511
          8d13455b-2aa9-4584-ab38-89421c99dc9d
          History
          Custom metadata
          Phys.Rev.Lett.95:105701,2005
          4 pages, 3 figures. Replaced by revised version
          cond-mat.stat-mech hep-ph quant-ph

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