English

Effect of Reconnection Probability on Cosmic (Super)string Network Density

Astrophysics 2009-11-13 v1 High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

We perform numerical simulations of cosmic string evolution with intercommuting probability PP in the range 5×103P15\times 10^{-3}\le P\le 1, both in the matter and radiation eras, using a modified version of the Allen-Shellard code. We find that the dependence of the scaling density on PP is significantly different than the suggested ρP1\rho\propto P^{-1} form. In particular, for probabilities greater than P0.1P\simeq 0.1, ρ(1/P)\rho(1/P) is approximately flat, but for PP less than this value it is well-fitted by a power-law with exponent 0.60.12+0.150.6^{+0.15}_{-0.12}. This shows that the enhancement of string densities due to a small intercommuting probability is much less prominent than initially anticipated. We interpret the flat part of ρ(1/P)\rho(1/P) in terms of multiple opportunities for string reconnections during one crossing time, due to small-scale wiggles. We also propose a two-scale model incorporating the key physical mechanisms, which satisfactorily fits our results over the whole range of PP covered by the simulations.

Keywords

Cite

@article{arxiv.astro-ph/0512582,
  title  = {Effect of Reconnection Probability on Cosmic (Super)string Network Density},
  author = {A. Avgoustidis and E. P. S. Shellard},
  journal= {arXiv preprint arXiv:astro-ph/0512582},
  year   = {2009}
}

Comments

6 pages, 4 figures

R2 v1 2026-07-22T09:02:12.964Z