arXiv:cond-mat/0207573·v2·Statistical Mechanics
The Information Geometry of the Ising Model on Planar Random Graphs
W. Janke🇩🇪 · D.A. Johnston🇬🇧 · Ranasinghe P. K. C. Malmini🇱🇰
Abstract
It has been suggested that an information geometric view of statistical mechanics in which a metric is introduced onto the space of parameters provides an interesting alternative characterisation of the phase structure, particularly in the case where there are two such parameters -- such as the Ising model with inverse temperature and external field . In various two parameter calculable models the scalar curvature of the information metric has been found to diverge at the phase transition point and a plausible scaling relation postulated: . For spin models the necessity of calculating in non-zero field has limited analytic consideration to 1D, mean-field and Bethe lattice Ising models. In this letter we use the solution in field of the Ising model on an ensemble of planar random graphs (where ) to evaluate the scaling behaviour of the scalar curvature, and find . The apparent discrepancy is traced back to the effect of a negative .
Comments: Version accepted for publication in PRE, revtex4