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Strange Attractor in the Potts Spin Glass on Hierarchical Lattices

Published 30 Mar 2013 in cond-mat.dis-nn and cond-mat.stat-mech | (1304.0066v2)

Abstract: The spin-glass qq-state Potts model on dd-dimensional diamond hierarchical lattices is investigated by an exact real space renormalization group scheme. Above a critical dimension dl(q)d_l(q) for $q > 2$, the coupling constants probability distribution flows to a low-temperature \emph{strange attractor} or to the high-temperature paramagnetic fixed point, according to the temperature is below or above the critical temperature Tc(q,d)T_c(q,d). The strange attractor was investigated considering four initial different distributions for q=3q = 3 and d=5d = 5 presenting strong robustness in shape and temperature interval suggesting a condensed phase with algebraic decay.

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