English

Non-Abelian strings and domain walls in two Higgs doublet models

High Energy Physics - Phenomenology 2018-09-03 v2 High Energy Physics - Theory

Abstract

Contrary to the standard model that does not admit topologically nontrivial solitons, two Higgs doublet models admit topologically stable vortex strings and domain walls. We numerically confirm the existence of a topological ZZ-string confining fractional ZZ-flux inside. We show that topological strings at sinθW=0\sin\theta_W = 0 limit reduce to non-Abelian strings which possess non-Abelian moduli S2S^2 associated with spontaneous breakdown of the SU(2)SU(2) custodial symmetry. We numerically solve the equations of motion for various parameter choices. It is found that a gauging U(1)YU(1)_Y always lowers the tension of the ZZ-string while it keeps that of the WW-string. On the other hand, a deformation of the Higgs potential is either raising or lowering the tensions of the ZZ-string and WW-string. We numerically obtain an effective potential for the non-Abelian moduli S2S^2 for various parameter deformations under the restriction tanβ=1\tan\beta=1. It is the first time to show that there exists a certain parameter region where the topological WW-string can be the most stable topological excitation, contrary to conventional wisdom of electroweak theories. We also obtain numerical solutions of composites of the string and domain walls in a certain condition.

Keywords

Cite

@article{arxiv.1805.07015,
  title  = {Non-Abelian strings and domain walls in two Higgs doublet models},
  author = {Minoru Eto and Masafumi Kurachi and Muneto Nitta},
  journal= {arXiv preprint arXiv:1805.07015},
  year   = {2018}
}

Comments

37 pages, 15 figures. v2: minor corrections, new references added