English

Bayesian analysis for a class of $\alpha$-attractor inflationary models

Cosmology and Nongalactic Astrophysics 2023-07-12 v2

Abstract

We perform a Bayesian study of a generalization of the basic α\alpha-attractor T model given by the potential V(ϕ)=V0[1sechp(ϕ/6αMpl)]V(\phi)=V_0\left[1-\text{sech}^{p}\left(\phi/\sqrt{6\alpha}M_{pl}\right)\right] where ϕ\phi is the inflaton field and the parameter α\alpha corresponds to the inverse curvature of the scalar manifold in the conformal or superconformal realizations of the attractor models. Such generalization is characterized by the power pp which includes the basic or base model for p=2p=2. Once the priors for the parameters of the α\alpha-attractor potential are set by numerical exploration, we perform the corresponding statistical analysis for the cases p=1,2,3,4p=1\, , 2\, , 3\, ,4, and derive posteriors. Considering the original α\alpha-attractor potential as the base model, we calculate the evidence for our generalization, and conclude that the p=4p=4 model is preferred by the CMB data. We also present constraints for the parameter α\alpha. Interestingly, all the cases studied prefer a specific value for the tensor-to-scalar ratio given by r0.0025r\simeq 0.0025.

Cite

@article{arxiv.2212.13610,
  title  = {Bayesian analysis for a class of $\alpha$-attractor inflationary models},
  author = {Francisco X. Linares Cedeño and Gabriel German and Juan Carlos Hidalgo and Ariadna Montiel},
  journal= {arXiv preprint arXiv:2212.13610},
  year   = {2023}
}

Comments

17 pages, 8 figures, 4 tables. Minor amendments to match the version published in JCAP

R2 v1 2026-06-28T07:54:17.221Z