paper

Bouncing solutions from generalized EoS

arXiv:1701.03438 · doi:10.1140/epjc/s10052-017-5388-2

Abstract

We present an exact analytical bouncing solution for a closed universe filled with only one exotic fluid with negative pressure, obeying a Generalized Equations of State (GEoS) of the form , where , and are constants. In our solution and and is kept as a free parameter. For particular values of the initial conditions, we obtain that our solution obeys Null Energy Condition (NEC), which allows us to reinterpret the matter source as that of a real scalar field, , with a positive kinetic energy and a potential . We compute numerically the scalar field as a function of time as well as its potential , and find an analytical function for the potential that fits very accurately with the numerical results obtained. The shape of this potential can be well described by a Gaussian-type of function, and hence, there is no spontaneous symmetry minimum of . We further show that the bouncing scenario is structurally stable under small variations of the parameter , such that a family of bouncing solutions can be find numerically, in a small vicinity of the value .

12 pages, 12 figures