No large scale curvature perturbations during the waterfall phase transition of hybrid inflation
Abstract
In this paper the possibility of generating large scale curvature perturbations induced from the entropic perturbations during the waterfall phase transition of the standard hybrid inflation model is studied. We show that whether or not appreciable amounts of large scale curvature perturbations are produced during the waterfall phase transition depends crucially on the competition between the classical and the quantum mechanical backreactions to terminate inflation. If one considers only the classical evolution of the system, we show that the highly blue-tilted entropy perturbations induce highly blue-tilted large scale curvature perturbations during the waterfall phase transition which dominate over the original adiabatic curvature perturbations. However, we show that the quantum backreactions of the waterfall field inhomogeneities produced during the phase transition dominate completely over the classical backreactions. The cumulative quantum backreactions of very small scale tachyonic modes terminate inflation very efficiently and shut off the curvature perturbation evolution during the waterfall phase transition. This indicates that the standard hybrid inflation model is safe under large scale curvature perturbations during the waterfall phase transition.
- Publication:
-
Physical Review D
- Pub Date:
- March 2011
- DOI:
- arXiv:
- arXiv:1005.2934
- Bibcode:
- 2011PhRvD..83f3513A
- Keywords:
-
- 98.80.Cq;
- Particle-theory and field-theory models of the early Universe;
- High Energy Physics - Theory;
- Astrophysics - Cosmology and Extragalactic Astrophysics;
- High Energy Physics - Phenomenology
- E-Print:
- The discussions of quantum back-reactions are improved and new analysis from Eq (84) to (98) are added, new references added