Large-N_f behavior of the Yukawa model: analytic results
Abstract
We investigate the Yukawa model in which fermions are coupled with a scalar field through a Yukawa interaction. The phase diagram is rather well understood. If the fermions are massless, there is a chiral transition at : for chiral symmetry is spontaneously broken. At the transition is mean-field like, while, for any finite , standard arguments predict Ising behavior. This apparent contradiction has been explained by Kogut et al., who showed by scaling arguments and Monte Carlo simulations that in the large- limit the width of the Ising critical region scales as a power of , so that only mean-field behavior is observed for strictly equal to infinity. We will show how the results of Kogut et al. can be recovered analytically in the framework of a generalized expansion. The method we use is a simple generalization of the method we have recently applied to a two-dimensional generalized Heisenberg model.
Cite
@article{arxiv.hep-lat/0509063,
title = {Large-N_f behavior of the Yukawa model: analytic results},
author = {Sergio Caracciolo and Bortolo Matteo Mognetti and Andrea Pelissetto},
journal= {arXiv preprint arXiv:hep-lat/0509063},
year = {2007}
}
Comments
Talk presented at XXIIIrd International Symposium on Lattice Field Theory, 25-30 July 2005, Trinity College, Dublin, Ireland