Theta dependence in Holographic QCD
Abstract
We study the effects of the CP-breaking topological -term in the large QCD model by Witten, Sakai and Sugimoto with degenerate light flavors. We first compute the ground state energy density, the topological susceptibility and the masses of the lowest lying mesons, finding agreement with expectations from the QCD chiral effective action. Then, focusing on the case, we consider the baryonic sector and determine, to leading order in the small regime, the related holographic instantonic soliton solutions. We find that while the baryon spectrum does not receive corrections, this is not the case for observables like the electromagnetic form factor of the nucleons. In particular, it exhibits a dipole term, which turns out to be vector-meson dominated. The resulting neutron electric dipole moment, which is exactly the opposite as that of the proton, is of the same order of magnitude of previous estimates in the literature. Finally, we compute the CP-violating pion-nucleon coupling constant , finding that it is zero to leading order in the large limit.
Cite
@article{arxiv.1611.00048,
title = {Theta dependence in Holographic QCD},
author = {Lorenzo Bartolini and Francesco Bigazzi and Stefano Bolognesi and Aldo L. Cotrone and Andrea Manenti},
journal= {arXiv preprint arXiv:1611.00048},
year = {2017}
}
Comments
Latex, 61 pages, 5 figures; v2: Section 8.5 with a novel analysis of the electric dipole form factor has been added; further comments and references added; typos corrected