Emergent Universe from an Unstable de Sitter Phase
Abstract
In the Emergent scenario, the Universe should evolve from a non-singular state replacing the typical singularity of General Relativity, for any initial condition. For the scalar field model in [1] we show that only a set of measure zero of trajectories leads to emergence, either from a static state (an Einstein model), or from a de Sitter state. Assuming a scenario based on CDM interacting with a Dark Energy fluid, we show that in general flat and open models expand from a non-singular unstable de Sitter state at high energies; for some closed models this state is a transition phase with a bounce, other closed models are cyclic. A subset of these models are qualitatively in agreement with the observable Universe, accelerating at high energies, going through a matter-dominated decelerated era, then accelerating toward a de Sitter phase.
Cite
@article{arxiv.2406.04839,
title = {Emergent Universe from an Unstable de Sitter Phase},
author = {Molly Burkmar and Marco Bruni},
journal= {arXiv preprint arXiv:2406.04839},
year = {2024}
}
Comments
Essay awarded an Honorable Mention for the Gravity Research Foundation 2024 Awards for Essays on Gravitation, 13 pages, 4 figures. Updated version reflects changes made for publication