English

Flavor-dependent $U(1)$ extension inspired by lepton, baryon and color numbers

High Energy Physics - Phenomenology 2023-11-21 v2

Abstract

There is no reason why the gauge symmetry extension is family universal as in the standard model and the most well-motivated models, e.g. left-right symmetry and grand unification. Hence, we propose a simplest extension of the standard model -- a flavor-dependent U(1)U(1) gauge symmetry -- and find the new physics insight. For this aim, the U(1)U(1) charge, called XX, is expressed as X=xB+yLX=x B+y L in which xx and yy are free parameters as functions of flavor index, e.g. for a flavor ii they take xix_i and yiy_i respectively, where BB and LL denote normal baryon and lepton numbers. Imposing a relation involved by the color number 33, i.e. x1,2,,n=xn+1,n+2,,n+m=3y1,2,,n+m3z-x_{1,2,\cdots,n}=x_{n+1,n+2,\cdots,n+m}=3y_{1,2,\cdots,n+m}\equiv 3z, for arbitrarily nonzero zz, we achieve a novel U(1)U(1) theory with implied XX-charge. This theory not only explains the origin of the number of observed fermion families but also offers a possible solution for both neutrino mass and dark matter, which differs from BLB-L extension. Two typical models based on this idea are examined, yielding interesting results for flavor-changing neutral currents and particle colliders, besides those of neutrino mass and dark matter.

Keywords

Cite

@article{arxiv.2307.13493,
  title  = {Flavor-dependent $U(1)$ extension inspired by lepton, baryon and color numbers},
  author = {Duong Van Loi and Phung Van Dong},
  journal= {arXiv preprint arXiv:2307.13493},
  year   = {2023}
}

Comments

36 pages, 7 figures, 2 tables; Matches published version in EPJC