Self-gravitating scalar breathers with negative cosmological constant
Abstract
Breather-type (time-periodic and spatially localized) solutions with spherical symmetry are investigated in a massless scalar field theory coupled to Einstein's gravity with cosmological constant in spatial dimensions imposing anti de Sitter (AdS) asymptotics on space-time. Using a code constructed with the Kadath library that enables the use of spectral methods, the phase space of breather solutions is explored in detail for and . It is found that there are discrete families of solutions indexed by an integer and by their frequency. Using a time evolution code these AdS breathers are found to be stable for up to a critical central density, in analogy to boson stars. Using an analytical perturbative expansion small amplitude breathers are worked out for arbitrary dimensions .
Keywords
Cite
@article{arxiv.1503.07746,
title = {Self-gravitating scalar breathers with negative cosmological constant},
author = {Gyula Fodor and Péter Forgács and Philippe Grandclément},
journal= {arXiv preprint arXiv:1503.07746},
year = {2015}
}
Comments
24 pages, 13 figures, one figure and references added, version accepted for Phys. Rev. D