Crossover scaling in the two-dimensional three-state Potts model
arXiv:1307.3865 · doi:10.5488/CMP.16.23605
Abstract
We apply simulated tempering and magnetizing (STM) Monte Carlo simulations to the two-dimensional three-state Potts model in an external magnetic field in order to investigate the crossover scaling behaviour in the temperature-field plane at the Potts critical point and towards the Ising universality class for negative magnetic fields. Our data set has been generated by STM simulations of several square lattices with sizes up to 160 x 160 spins, supplemented by conventional canonical simulations of larger lattices at selected simulation points. We present careful scaling and finite-size scaling analyses of the crossover behaviour with respect to temperature, magnetic field and lattice size.
8 pages, 6 figures
References in corpus (2)
Cited by in corpus (4)
- Magnon crystallization in the kagome lattice antiferromagnet
- Logarithmic finite-size scaling correction to the leading Fisher zeros in the p-state clock model: A higher-order tensor renormalization group study
- Order-disorder transition in a two-dimensional associating lattice gas
- Deterministic Path Search Algorithm on Free-Energy Landscape using Random Grids