English

Low energy constants of \chiPT from the instanton vacuum model

High Energy Physics - Phenomenology 2008-11-26 v1

Abstract

In the framework of the instanton vacuum model we make expansion over the current mass m and number of colors N_c and evaluate O(1/Nc,m,m/Nc,mlnm/Nc){\cal O}(1/N_c, m, m/N_c, m \ln m/N_c)-corrections to the dynamical quark mass M, the quark condensate <qˉq><\bar qq>, the pion mass M_\pi and decay constant F_\pi. There are several sources of these corrections: meson loops, finite size of the instanton distribution and the quark-quark "tensor" interaction terms. In contrast to the expectations, we found that numerically the 1/N_c-corrections to dynamical mass are large and mostly come from meson loops. As a consequence, we have large 1/N_c-corrections to all the other quantities. To provide the values of Fπ(m=0),\aveqˉq(m=0)F_\pi(m=0), \ave{\bar qq(m=0)} in agreement with \chiPT, we offer a new set of parameters \rho, R. Finally, we find the low-energy SU(2)_f chiral lagrangian constants lˉ3,lˉ4\bar l_3, \bar l_4 in a rather good correspondence with the phenomenology.

Keywords

Cite

@article{arxiv.0707.1997,
  title  = {Low energy constants of \chiPT from the instanton vacuum model},
  author = {K. Goeke and M. M. Musakhanov and M. Siddikov},
  journal= {arXiv preprint arXiv:0707.1997},
  year   = {2008}
}