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      Beyond mean-field bistability in driven-dissipative lattices: bunching-antibunching transition and quantum simulation

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          Abstract

          In the present work we investigate the existence of multiple nonequilibrium steady states in a coherently driven XY lattice of dissipative two-level systems. A commonly used mean-field ansatz, in which spatial correlations are neglected, predicts a bistable behavior with a sharp shift between low- and high-density states. In contrast one-dimensional matrix product methods reveal these effects to be artifacts of the mean-field approach, with both disappearing once correlations are taken fully into account. Instead, a bunching-antibunching transition emerges. This indicates that alternative approaches should be considered for higher spatial dimensions, where classical simulations are currently infeasible. Thus we propose a circuit QED quantum simulator implementable with current technology to enable an experimental investigation of the model considered.

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          Author and article information

          Journal
          2015-10-22
          2016-02-16
          Article
          10.1103/PhysRevA.93.023821
          1510.06651
          c0b33d95-5f25-477e-83a7-1aaa3b0ff87c

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          Phys. Rev. A 93, 023821 (2016)
          quant-ph

          Quantum physics & Field theory
          Quantum physics & Field theory

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