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Driven-dissipative ising model: mean field solution

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arxiv 1502.03046 v1 pith:7HJVTCYC submitted 2015-02-10 cond-mat.stat-mech

Driven-dissipative ising model: mean field solution

classification cond-mat.stat-mech
keywords bathdrivefieldcriticalequilibriumisingmeanmodel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the fate of the Ising model and its universal properties when driven by a rapid periodic drive and weakly coupled to a bath at equilibrium. The far from equilibrium steady-state regime of the system is accessed by means of a Floquet mean field approach. We show that, depending on the details of the bath, the drive can strongly renormalize the critical temperature to higher temperatures, modify the critical exponents, or even change the nature of the phase transition from second to first order after the emergence of a tricritical point. Moreover, by judiciously selecting the frequency of the field and by engineering the spectrum of the bath, one can drive a ferromagnetic Hamiltonian to an antiferromagnetically ordered phase and vice-versa.

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