arXiv:hep-th/0406235·v1·High Energy Physics — Theory
Collision of Domain Walls and Reheating of the Brane Universe
Yu-ichi Takamizu🇯🇵 · Kei-ichi Maeda🇯🇵
Abstract
We study a particle production at the collision of two domain walls in 5-dimensional Minkowski spacetime. This may provide the reheating mechanism of an ekpyrotic (or cyclic) brane universe, in which two BPS branes collide and evolve into a hot big bang universe. We evaluate a production rate of particles confined to the domain wall. The energy density of created particles is given as where is a coupling constant of particles to a domain-wall scalar field, is the number of bounces at the collision and is a fundamental mass scale of the domain wall. It does not depend on the width of the domain wall, although the typical energy scale of created particles is given by . The reheating temperature is evaluated as . In order to have the baryogenesis at the electro-weak energy scale, the fundamental mass scale is constrained as GeV for .
Comments: 10 pages, 12 figures