paper

Scalar perturbation spectra from warm inflation

arXiv:astro-ph/0305015 · doi:10.1103/PhysRevD.69.083525

Abstract

We present a numerical integration of the cosmological scalar perturbation equations in warm inflation. The initial conditions are provided by a discussion of the thermal fluctuations of an inflaton field and thermal radiation using a combination of thermal field theory and thermodynamics. The perturbation equations include the effects of a damping coefficient and a thermodynamic potential . We give an analytic expression for the spectral index of scalar fluctuations in terms of a new slow-roll parameter constructed from . A series of toy models, inspired by spontaneous symmetry breaking and a known form of the damping coefficient, lead to a spectrum with on large scales and on small scales.

12 pages, 5 figures, RevTeX 4, revised with extra figures