Matter Fields and Non-Abelian Gauge Fields Localized on Walls
Abstract
Massless matter fields and non-Abelian gauge fields are localized on domain walls in a (4+1)-dimensional gauge theory with flavor symmetry. We also introduce flavor gauge fields and a scalar-field-dependent gauge coupling, which provides massless non-Abelian gauge fields localized on the wall. We find a chiral Lagrangian interacting minimally with the non-Abelian gauge field together with nonlinear interactions of moduli fields as the (3+1)-dimensional effective field theory up to the second order of derivatives. Our result provides a step towards a realistic model building of brane-world scenario using topological solitons.
Cite
@article{arxiv.1208.6219,
title = {Matter Fields and Non-Abelian Gauge Fields Localized on Walls},
author = {Masato Arai and Filip Blaschke and Minoru Eto and Norisuke Sakai},
journal= {arXiv preprint arXiv:1208.6219},
year = {2016}
}
Comments
45 pages, 3 figures, several typos corrected, to appear in Progress of Theoretical and Experimental Physics (PTEP), several references was not cited in the text and were removed