English

Stability of Neutral Fermi Balls with Multi-Flavor Fermions

High Energy Physics - Theory 2014-11-18 v1 Astrophysics High Energy Physics - Phenomenology

Abstract

A Fermi ball is a kind of non-topological soliton, which is thought to arise from the spontaneous breaking of an approximate Z2Z_2 symmetry and to contribute to cold dark matter. We consider a simple model in which fermion fields with multi-flavors are coupled to a scalar field through Yukawa coupling, and examine how the number of the fermion flavors affects the stability of the Fermi ball against the fragmentation. (1)We find that the Fermi ball is stable against the fragmentation in most cases even in the lowest order thin-wall approximation. (2)We then find that in the other specific cases, the stability is marginal in the lowest order thin-wall approximation, and the next-to-leading order correction determines the stable region of the coupling constants; We examine the simplest case where the total fermion number NiN_i and the Yukawa coupling constant GiG_i of each flavor ii are common to the flavor, and find that the Fermi ball is stable in the limited region of the parameters and has the broader region for the larger number of the flavors.

Keywords

Cite

@article{arxiv.hep-th/0301216,
  title  = {Stability of Neutral Fermi Balls with Multi-Flavor Fermions},
  author = {T. Yoshida and K. Ogure and J. Arafune},
  journal= {arXiv preprint arXiv:hep-th/0301216},
  year   = {2014}
}

Comments

10 pages, 3 eps figures, ReVTeX4