English

Evolution of a global string network in a matter dominated universe

High Energy Physics - Phenomenology 2009-12-30 v2 Astrophysics

Abstract

We evolve the network of global strings in the matter-dominated universe by means of numerical simulations. The existence of the scaling solution is confirmed as in the radiation-dominated universe but the scaling parameter ξ\xi takes a slightly smaller value, ξ0.6±0.1\xi \simeq 0.6 \pm 0.1, which is defined as ξ=ρst2/μ\xi = \rho_{s} t^{2} / \mu with ρs\rho_{s} the energy density of global strings and μ\mu the string tension per unit length. The change of ξ\xi from the radiation to the matter-dominated universe is consistent with that obtained by Albrecht and Turok by use of the one-scale model. We also study the loop distribution function and find that it can be well fitted with that predicted by the one-scale model, where the number density nl(t)n_{l}(t) of the loop with the length ll is given by nl(t)=ν/[t2(l+κt)2]n_{l}(t) = \nu/[t^2 (l + \kappa t)^2] with ν0.040\nu \sim 0.040 and κ0.48\kappa \sim 0.48. Thus, the evolution of the global string network in the matter-dominated universe can be well described by the one-scale model as in the radiation-dominated universe.

Keywords

Cite

@article{arxiv.hep-ph/9910352,
  title  = {Evolution of a global string network in a matter dominated universe},
  author = {Masahide Yamaguchi and Jun'ichi Yokoyama and M. Kawasaki},
  journal= {arXiv preprint arXiv:hep-ph/9910352},
  year   = {2009}
}

Comments

10 pages, 5 figures

R2 v1 2026-07-22T14:54:31.335Z