On the stability of string-hole gas
Abstract
Focusing on a string-hole gas within the pre-big bang scenario, we study the stability of its solutions in the phase space. We firstly extend the analysis present in the literature relaxing the ideal-gas properties of the string-hole gas, taking into account a (bulk-)viscosity term. Then we consider the case of a theory described by a complete O(d,d)-invariant action up to all orders in -corrections (the Hohm-Zwiebach action), studying the stability of the string-hole gas solution with or without the introduction of the viscosity term. Furthermore, the bulk viscosity is also considered for two different first order -corrected actions: the Gasperini-Maggiore-Veneziano-action and the Meissner-action. The results obtained show how the viscosity can help to stabilize the string-hole gas solution, obtaining constraints on the equation of state of the gas.
Keywords
Cite
@article{arxiv.2308.16764,
title = {On the stability of string-hole gas},
author = {Denis Bitnaya and Pietro Conzinu and Giovanni Marozzi},
journal= {arXiv preprint arXiv:2308.16764},
year = {2023}
}
Comments
17 pages, 1 figure. Several comments and clarifications added, typos corrected. One reference added. Version accepted for publication in JCAP