Uncovering the secrets of unusual phase diagrams: applications of two-dimensional Wang-Landau sampling

We use a two-dimensional Wang-Landau sampling algorithm to calculate the density of states for two discrete spin models and then extract their phase diagrams. The first system is an asymmetric Ising model on a triangular lattice with two- and three-body interactions in an external field. An accurate density of states allows us to locate the critical endpoint accurately in a two-dimensional parameter space. We observe a divergence of the spectator phase boundary and of the temperature derivative of the magnetization coexistence diameter at the critical endpoint in quantitative agreement with theoretical predictions. The second model is a Q-state Potts model in an external field H. We map the phase diagram of this model for Q > 8 and observe a first-order phase transition line that starts at the H = 0 phase transition point and ends at a critical point (Tc,Hc), which must be located in a two-dimensional parameter space. The critical field Hc(Q) is positive and increases with Q, in qualitative agreement with previous theoretical predictions.

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Bibliographic Details
Main Authors: Tsai,Shan-Ho, Wang,Fugao, Landau,D. P.
Format: Digital revista
Language:English
Published: Sociedade Brasileira de Física 2008
Online Access:http://old.scielo.br/scielo.php?script=sci_arttext&pid=S0103-97332008000100003
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