New Physics signature in $D^0 (\bar{D}^0)\to f$ effective width asymmetries
Abstract
Violation of charge conjugation-parity () symmetry plays a major rule in the dominance of matter in our universe. A kind of violation results from the asymmetry of the life time measured in and , here is a heavy meson, decays to final states which is referred in the literature as . In this paper, we give an estimation of the upper bound on for the Cabibbo Favored decay process in different models. We show that in the standard model, . Recently a bound on has been obtained: . This result motivates further studies on in beyond standard model physics. In the framework of two Higgs doublet model with generic Yukawa structure, we show that which is several orders of magnitude smaller than the current experimental value. Finally, in the framework of left-right symmetric models in which the mixing between the left and the right gauge bosons is allowed and the left-right symmetry is not manifest at unification scale, we find that can be as large as which is one order of magnitude smaller than the experimentally measured value by LHCb collaborators.
Keywords
Cite
@article{arxiv.1507.01188,
title = {New Physics signature in $D^0 (\bar{D}^0)\to f$ effective width asymmetries},
author = {David Delepine and Gaber Faisel and Carlos A. Ramirez},
journal= {arXiv preprint arXiv:1507.01188},
year = {2019}
}
Comments
17 pages, no figures, accepted for publication