English

Mirror fermions and the strong CP problem: A new axionless solution and experimental implications

High Energy Physics - Phenomenology 2018-10-29 v2 High Energy Physics - Experiment

Abstract

A new solution to the strong CP problem with distinct experimental signatures (long-lived particles) at the LHC is proposed. It is based on the Yukawa interactions between mirror quarks, Standard Model (SM) quarks and Higgs singlets. (Mirror quarks and leptons which include non-sterile right-handed neutrinos whose Majorana masses are proportional to the electroweak scale, form the basis of the EW-νR\nu_R model.) The aforementioned Yukawa couplings can in general be complex and can contribute to ArgDetMArg\, Det M (θˉ=θQCD+ArgDetM\bar{\theta} = \theta_{QCD} + Arg\, Det M) at tree-level. The model contains a Peccei-Quinn-type global symmetry which allows it to rotate away θQCD\theta_{QCD}.The crux of matter in this manuscript is the fact that {\em no matter how large} the CP-violating phases in the Yukawa couplings might be, ArgDetMArg\, Det M can remain small i.e. θˉ<1010\bar{\theta} < 10^{-10} for reasonable values of the Yukawa couplings and, in fact, vanishes when the VEV of the Higgs singlet (responsible for the Dirac part of the neutrino mass in the seesaw mechanism) vanishes. The smallness of the contribution to θˉ\bar{\theta} is {\em principally due} to the smallness of the ratio of the two mass scales in the seesaw mechanism: the Dirac and Majorana mass scales.

Keywords

Cite

@article{arxiv.1712.09701,
  title  = {Mirror fermions and the strong CP problem: A new axionless solution and experimental implications},
  author = {P. Q. Hung},
  journal= {arXiv preprint arXiv:1712.09701},
  year   = {2018}
}

Comments

7 double-column pages, 0 figure. Note the change of title. The Higgs sector is changed and the treatment of the global symmetries of the model is much improved. The discussion of quark mass matrices has also been expanded. The basic conclusions are the same. arXiv admin note: substantial text overlap with arXiv:1704.06390

R2 v1 2026-06-22T23:30:30.387Z