Nonperturbative dynamics of reheating after inflation: A review
Abstract
Our understanding of the state of the universe between the end of inflation and big bang nucleosynthesis (BBN) is incomplete. The dynamics at the end of inflation are rich and a potential source of observational signatures. Reheating, the energy transfer between the inflaton and Standard Model fields (possibly through intermediaries) and their subsequent thermalization, can provide clues to how inflation fits in with known high-energy physics. We provide an overview of our current understanding of the nonperturbative, nonlinear dynamics at the end of inflation, some salient features of realistic particle physics models of reheating, and how the universe reaches a thermal state before BBN. In addition, we review the analytical and numerical tools available in the literature to study preheating and reheating and discuss potential observational signatures from this fascinating era.
- Publication:
-
International Journal of Modern Physics D
- Pub Date:
- December 2015
- DOI:
- arXiv:
- arXiv:1410.3808
- Bibcode:
- 2015IJMPD..2430003A
- Keywords:
-
- Inflation;
- reheating;
- nonperturbative dynamics;
- preheating;
- parametric resonance;
- thermalization;
- inflaton decay;
- 98.80.Cq;
- 95.30.Cq;
- Particle-theory and field-theory models of the early Universe;
- Elementary particle processes;
- High Energy Physics - Phenomenology;
- Astrophysics - Cosmology and Nongalactic Astrophysics;
- High Energy Physics - Theory
- E-Print:
- v1: 44 pages, 9 figures. Invited review for the International Journal of Modern Physics D. For v2: Minor changes in text