Twisted space-time reduced model of large N QCD with two adjoint Wilson fermions
Abstract
The space-time reduced model of large N QCD with two adjoint Wilson fermions is constructed by applying the symmetric twist boundary conditions with non-vanishing flux . For large but finite , the model should behave as the large N version of the ordinary lattice gauge model on a space-time volume. We perform a comparison of the dependence of several quantities in this model and in the =0 model (corresponding to periodic boundary conditions). Although the Z(N) symmetry seems unbroken in all cases, the N-dependence analysis favours the use of the same values of and for which the symmetry is also unbroken in the pure gauge case. In particular, the model, studied recently by several authors, shows a large and irregular dependence on within our region of parameters. This makes this reduced model very impractical for extracting physical information about the large N lattice theory. On the contrary, the model for and large enough gives consistent results, even for extended observables as Wilson loops up to =8, matching the expected behaviour for the lattice model with a space-time volume.
Keywords
Cite
@article{arxiv.1305.6253,
title = {Twisted space-time reduced model of large N QCD with two adjoint Wilson fermions},
author = {Antonio González-Arroyo and Masanori Okawa},
journal= {arXiv preprint arXiv:1305.6253},
year = {2013}
}
Comments
latex. 14 text pages, 3 tables and 7 figures