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Spin Glass Phase Transition on Scale-Free Networks

arXiv:cond-mat/0501308 · doi:10.1103/PhysRevE.71.056115

Abstract

We study the Ising spin glass model on scale-free networks generated by the static model using the replica method. Based on the replica-symmetric solution, we derive the phase diagram consisting of the paramagnetic (P), ferromagnetic (F), and spin glass (SG) phases as well as the Almeida-Thouless line as functions of the degree exponent , the mean degree , and the fraction of ferromagnetic interactions . To reflect the inhomogeneity of vertices, we modify the magnetization and the spin glass order parameter with vertex-weights. The transition temperature () between the P-F (P-SG) phases and the critical behaviors of the order parameters are found analytically. When , and are infinite, and the system is in the F phase or the mixed phase for , while it is in the SG phase at . and decay as power-laws with increasing temperature with different -dependent exponents. When , the and are finite and related to the percolation threshold. The critical exponents associated with and depend on for () at the P-F (P-SG) boundary.

Phys. Rev. E in press

Spin Glass Phase Transition on Scale-Free Networks · wovepaper