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arxiv: 0805.0407 · v2 · submitted 2008-05-04 · ❄️ cond-mat.dis-nn · cond-mat.stat-mech· math-ph· math.MP

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Freezing and extreme value statistics in a Random Energy Model with logarithmically correlated potential

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classification ❄️ cond-mat.dis-nn cond-mat.stat-mechmath-phmath.MP
keywords correlatedenergyfreezingmodelpotentialrandomclassdistribution
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We investigate some implications of the freezing scenario proposed by Carpentier and Le Doussal (CLD) for a random energy model (REM) with logarithmically correlated random potential. We introduce a particular (circular) variant of the model, and show that the integer moments of the partition function in the high-temperature phase are given by the well-known Dyson Coulomb gas integrals. The CLD freezing scenario allows one to use those moments for extracting the distribution of the free energy in both high- and low-temperature phases. In particular, it yields the full distribution of the minimal value in the potential sequence. This provides an explicit new class of extreme-value statistics for strongly correlated variables, manifestly different from the standard Gumbel class. -

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