English

Twisted space-time reduced model of large N QCD with two adjoint Wilson fermions

High Energy Physics - Lattice 2013-08-09 v1 High Energy Physics - Theory

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 kk. For large but finite N=L2N=L^2, the model should behave as the large N version of the ordinary lattice gauge model on a V=L4V=L^4 space-time volume. We perform a comparison of the NN dependence of several quantities in this model and in the kk=0 model (corresponding to periodic boundary conditions). Although the Z4^4(N) symmetry seems unbroken in all cases, the N-dependence analysis favours the use of the same values of kk and LL for which the symmetry is also unbroken in the pure gauge case. In particular, the k=0k=0 model, studied recently by several authors, shows a large and irregular dependence on NN 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 N=289=172N=289=17^2 and large enough kk gives consistent results, even for extended observables as Wilson loops W(R,T)W(R,T) up to R,TR,T=8, matching the expected behaviour for the lattice model with a 17417^4 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