Field-induced Ordering in Critical Antiferromagnets
Abstract
Transfer-matrix scaling methods have been used to study critical properties of field-induced phase transitions of two distinct two-dimensional antiferromagnets with discrete-symmetry order parameters: triangular-lattice Ising systems (TIAF) and the square-lattice three-state Potts model (SPAF-3). Our main findings are summarised as follows. For TIAF, we have shown that the critical line leaves the zero-temperature, zero -field fixed point at a finite angle. Our best estimate of the slope at the origin is . For SPAF-3 we provided evidence that the zero-field correlation length diverges as , with , through analysis of the critical curve at plus crossover arguments. For SPAF-3 we have also ascertained that the conformal anomaly and decay-of-correlations exponent behave as: (a) H=0: ; (b) .
Cite
@article{arxiv.cond-mat/9812341,
title = {Field-induced Ordering in Critical Antiferromagnets},
author = {S. L. A. de Queiroz and Thereza Paiva and Jorge S. de Sá Martins and Raimundo R. dos Santos},
journal= {arXiv preprint arXiv:cond-mat/9812341},
year = {2009}
}
Comments
RevTex, 7 pages, 4 eps figures, to be published in Phys. Rev. E