Effective Potential for Scalar Field in Three Dimensions: Ising Model in the Ferromagnetic Phase
Abstract
We compute the effective potential for one-component real scalar field in three Euclidean dimensions (3D) in the case of spontaneously broken symmetry, from the Monte Carlo simulation of the 3D Ising model in external field at temperatures approaching the phase transition from below. We study probability distributions of the order parameter on the lattices from to , at . We find that, in close analogy with the symmetric case, plays an important role: is very well approximated by the sum of , and terms. An unexpected feature is the negative sign of the term. As close to the continuum limit as we can get (), we obtain We also compute several universal coupling constants and ratios, including the combination of critical amplitudes .
Keywords
Cite
@article{arxiv.hep-lat/9601021,
title = {Effective Potential for Scalar Field in Three Dimensions: Ising Model in the Ferromagnetic Phase},
author = {M. M. Tsypin},
journal= {arXiv preprint arXiv:hep-lat/9601021},
year = {2009}
}
Comments
13 pages, 5 Postscript figures, uses epsf.sty