Preheating the Universe from the Standard Model Higgs
arXiv:0911.1465 · doi:10.1063/1.3462688
Abstract
We discuss Preheating after an inflationary stage driven by the Standard Model (SM) Higgs field non-minimally coupled to gravity. We find that Preheating is driven by a complex process in which perturbative and non-perturbative effects occur simultaneously. The Higgs field, initially an oscillating coherent condensate, produces non-perturbatively W and Z gauge fields. These decay very rapidly into fermions, thus preventing gauge bosons to accumulate and, consequently, blocking the usual parametric resonance. The energy transferred into the fermionic species is, nevertheless, not enough to reheat the Universe, and resonant effects are eventually developed. Soon after resonance becomes effective, also backreaction from the gauge bosons into the Higgs condensate becomes relevant. We have determined the time evolution of the energy distribution among the remnant Higgs condensate and the non-thermal distribution of the SM fermions and gauge fields, until the moment in which backreaction becomes important. Beyond backreaction our approximations break down and numerical simulations and theoretical considerations beyond this work are required, in order to study the evolution of the system until thermalization.
10 pages, 1 figure. Proceedings of the "Invisible Universe International Conference", Paris 2009
References in corpus (1)
Cited by in corpus (24)
- Cosmological Backgrounds of Gravitational Waves
- Nonperturbative Dynamics Of Reheating After Inflation: A Review
- On Inflation with Non-minimal Coupling
- Living beyond the edge: Higgs inflation and vacuum metastability
- Higgs inflation with loop corrections in the Palatini formulation
- The art of simulating the early Universe -- Part I
- Planck scale black hole dark matter from Higgs inflation
- Gravitational wave production from preheating: parameter dependence
- Implications of stochastic effects for primordial black hole production in ultra-slow-roll inflation
- The Decay of the Standard Model Higgs after Inflation
- Higgs inflation with the Holst and the Nieh-Yan term
- Higgs inflation in the Palatini formulation with kinetic terms for the metric
- Higgs inflation at the hilltop
- Parametric Resonance in the Early Universe - A Fitting Analysis
- The Standard Model Higgs as the origin of the hot Big Bang
- Stochastic Background of Gravitational Waves from Fermions -- Theory and Applications
- Gravitational wave production from the decay of the Standard Model Higgs field after inflation
- Tree-level unitarity in Higgs inflation in the metric and the Palatini formulation
- A Theory of Self-Resonance After Inflation, Part 1: Adiabatic and Isocurvature Goldstone Modes
- Higgs- inflation -- full slow-roll study at tree-level
- Curvaton Decay by Resonant Production of the Standard Model Higgs
- The Higgs field and early universe cosmology: a (brief) review
- A Theory of Self-Resonance After Inflation, Part 2: Quantum Mechanics and Particle-Antiparticle Asymmetry
- Enhanced Preheating after Multi-Field Inflation: On the Importance of being Special