Holographic integral equations and walking technicolour
Abstract
We study chiral symmetry breaking in the holographic D3-D7 system in a simple model with an arbitrary running coupling. We derive equations for the D7 embedding and show there is a light pion. In particular we present simple integral equations, involving just the running coupling and the quark self energy, for the quark condensate and the pion decay constant. We compare these to the Pagels-Stokar or constituent quark model equivalent. We discuss the implications for walking Technicolour theories. We also perform a similar analysis in the four dimensional field theory whose dual is the non-supersymmetric D3-D5 system and propose that it represents a walking theory in which the quark condensate has dimension 2 + sqrt{3}.
Cite
@article{arxiv.0910.3073,
title = {Holographic integral equations and walking technicolour},
author = {Raul Alvares and Nick Evans and Astrid Gebauer and George James Weatherill},
journal= {arXiv preprint arXiv:0910.3073},
year = {2010}
}
Comments
17 pages, 4 Figures, small added analysis