G-Warm inflation: Intermediate model
arXiv:1811.05510 · doi:10.1103/PhysRevD.100.023529
Abstract
A warm-intermediate inflationary universe model is studied in the presence of the Galileon coupling . General conditions required for successful inflation are deduced and discussed from the background and cosmological perturbations under slow-roll approximation. In our analyze we assume that the dynamics of our model evolves accordingly two separate regimes, namely , i.e., when the Galileon term dominates over the standard kinetic term and the dissipative ratio, and secondly in the regime where both and become of the same order than unity. For these regimes and assuming that the coupling parameter constant, we consider two different dissipative coefficients ; one constant and the other being a function of the inflaton field. Furthermore, we find the allowed range in the space of parameters for our G-warm model by considering the latest data of Planck and also the BICEP2/Keck-Array data from the plane, in combination with the conditions in which the Galileon term dominates and the thermal fluctuations of the inflaton field predominate over the quantum ones.
30 pages and 4 figures
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