English

Mode analysis of cosmological perturbations with the $E$-model $\alpha$-attractor inflaton potentials

General Relativity and Quantum Cosmology 2020-12-25 v1 High Energy Physics - Theory

Abstract

We have carried out detailed kk-mode analysis of single-inflaton slow-roll inflationary perturbations including quantum fluctuations by setting up non-linear coupled differential equations of inflaton field (ϕ\phi), its perturbation (δϕ\delta\phi) and the metric perturbation (the Bardeen potential, ΦB\Phi_B), and calculated the number of e-folds (NN), scalar spectral index (nsn_s), tensor spectral index (nhn_h), scalar power spectrum (Δs\Delta_s), tensor power spectrum (Δh\Delta_h), tensor-to-scalar ratio (rr) and the Hubble parameter (HH) for different kk values at the horizon crossing. In these calculations we have employed the EE-model α\alpha-attractor potentials which are found to display slow-roll behaviour. The values of nsn_s and rr obtained by us are consistent with those given by the well-known universal α\alpha-attractor formulae. We got ns=0.956908n_s = 0.956908 and r=0.005571r= 0.005571 at k=106k = 10^6 Planck unit for the value of the potential parameter n=1n = 1. These can be compared with the Planck-2018 data viz., ns=0.9649±0.0042n_s = 0.9649\pm 0.0042 at 68%68\% CL, r<0.064r<0.064 at 95%95\% CL and ACT-2020 data viz., ns=0.9691±0.0041n_s = 0.9691\pm 0.0041 at 68%68\% CL.

Keywords

Cite

@article{arxiv.2012.13193,
  title  = {Mode analysis of cosmological perturbations with the $E$-model $\alpha$-attractor inflaton potentials},
  author = {Arunoday Sarkar and Chitrak Sarkar and Buddhadeb Ghosh},
  journal= {arXiv preprint arXiv:2012.13193},
  year   = {2020}
}

Comments

12 figures, 14 pages