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Information-Entropic Signature of the Critical Point

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arxiv 1501.06800 v2 pith:RIVQK7TE submitted 2015-01-27 cond-mat.stat-mech hep-thmath-phmath.MPnlin.AOnlin.PS

classification cond-mat.stat-mechhep-thmath-phmath.MPnlin.AOnlin.PS
keywords criticalbehaviorpointcriticalitynearspatialbubblecomplexity
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We investigate the critical behavior of continuous phase transitions in the context of Ginzburg Landau models with a double well effective potential. In particular, we show that the recently proposed configurational entropy, a measure of spatial complexity of the order parameter based on its Fourier mode decomposition, can be used to identify the critical point. We compute the CE for different temperatures and show that large spatial fluctuations near the critical point lead to a sharp decrease in the CE. We further show that the CE density has a marked scaling behavior near criticality, with the same power law as Kolmogorov turbulence. We reproduce the behavior of the CE at criticality with a percolating many bubble model.

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  1. Cosmological comoving behavior of the configurational entropy

    gr-qc 2019-08 reject novelty 5.0 of 10

    The paper claims the configurational entropy of cosmic fluids scales as a^{-3} for radiation and a^{-3/2} for matter, but the radiation result conflicts with the scale invariance of a blackbody spectrum.

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