Scaling laws for weakly interacting cosmic (super)string and p-brane networks
Abstract
In this paper we find new scaling laws for the evolution of -brane networks in -dimensional Friedmann-Robertson-Walker universes in the weakly-interacting limit, giving particular emphasis to the case of cosmic superstrings () living in a universe with three spatial dimensions (N=3). In particular, we show that, during the radiation era, the root-mean-square velocity is and the characteristic length of non-interacting cosmic string networks scales as ( is the scale factor), thus leading to string domination even when gravitational backreaction is taken into account. We demonstrate, however, that a small non-vanishing constant loop chopping efficiency parameter leads to a linear scaling solution with constant ( is the Hubble parameter) and in the radiation era, which may allow for a cosmologically relevant cosmic string role even in the case of light strings. We also determine the impact that the radiation-matter transition has on the dynamics of weakly interacting cosmic superstring networks.
Keywords
Cite
@article{arxiv.1202.6298,
title = {Scaling laws for weakly interacting cosmic (super)string and p-brane networks},
author = {P. P. Avelino and L. Sousa},
journal= {arXiv preprint arXiv:1202.6298},
year = {2012}
}
Comments
5 pages, 2 figures