Out-of-equilibrium evolution of scalar fields in FRW cosmology: renormalization and numerical simulations
arXiv:hep-ph/9906417 · doi:10.1103/PhysRevD.61.024016
Abstract
We present a renormalized computational framework for the evolution of a self-interacting scalar field (inflaton) and its quantum fluctuations in an FRW background geometry. We include a coupling of the field to the Ricci scalar with a general coupling parameter . We take into account the classical and quantum back reactions, i.e., we consider the the dynamical evolution of the cosmic scale factor. We perform, in the one-loop and in the large-N approximation, the renormalization of the equation of motion for the inflaton field, and of its energy momentum tensor. Our formalism is based on a perturbative expansion for the mode functions, and uses dimensional regularization. The renormalization procedure is manifestly covariant and the counter terms are independent of the initial state. Some shortcomings in the renormalization of the energy-momentum tensor in an earlier publication are corrected. We avoid the occurence of initial singularities by constructing a suitable class of initial states. The formalism is implemented numerically and we present some results for the evolution in the post-inflationary preheating era.
44 pages, uses latexsym, 6 pages with 11 figures in a .ps file
Cited by in corpus (10)
- The Effective Theory of Inflation in the Standard Model of the Universe and the CMB+LSS data analysis
- Renormalization of the nonequilibrium dynamics of fermions in a flat FRW universe
- Quantum Corrections to Inflaton and Curvaton Dynamics
- Out-of-equilibrium evolution of quantum fields in the hybrid model with quantum back reaction
- Coupled scalar fields in a flat FRW universe: renormalisation
- Gauge Fields Out-Of-Equilibrium: A Gauge Invariant Formulation and the Coulomb Gauge
- Nonequilibrium perturbation theory for spin-1/2 fields
- Quantum correlations in a gravitational collapse simulation with SpheriCo.jl
- Out of Equilibrium Dynamics of Supersymmetry at High Energy Density
- Initial time singularities and admissible initial states for a system of coupled scalar fields