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Generalized scaling theory for critical phenomena including essential singularity and infinite dimensionality

Published 22 Jun 2012 in cond-mat.stat-mech and cond-mat.dis-nn | (1206.5062v2)

Abstract: We propose a generic scaling theory for critical phenomena that includes power-law and essential singularities in finite and infinite dimensional systems. In addition, we clarify its validity by analyzing the Potts model in a simple hierarchical network, where a saddle-node bifurcation of the renormalization-group fixed point governs the essential singularity.

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