PaperPanorama

arXiv:1506.00205·v2·Statistical Mechanics

Spontaneous Symmetry Breaking and Phase Coexistence in Two-Color Networks

V. Avetisov🇷🇺 · A. Gorsky🇷🇺 · S. Nechaev🇷🇺 · O. Valba🇷🇺

PDFarXivINSPIREDOI

Abstract

We have considered an equilibrium ensemble of large Erdős-Renyi topological random networks with fixed vertex degree and two types of vertices, black and white, prepared randomly with the bond connection probability, . The network energy is a sum of all unicolor triples (either black or white), weighted with chemical potential of triples, . Minimizing the system energy, we see for some positive formation of two predominantly unicolor clusters, linked by a "string" of black-white bonds. We have demonstrated that the system exhibits critical behavior manifested in emergence of a wide plateau on the -curve, which is relevant to a spinodal decomposition in 1st order phase transitions. In terms of a string theory, the plateau formation can be interpreted as an entanglement between baby-universes in 2D gravity. We have conjectured that observed classical phenomenon can be considered as a toy model for the chiral condensate formation in quantum chromodynamics.

Comments: 9 pages, 4 figures

Citation historyopen in Citation History ↗