Physical Review D, Volume 100, Issue 2 , 15/07/2019
Generalized conformal transformation and inflationary attractors
Abstract
We investigate the inflationary attractors in models of inflation inspired from the general conformal transformation of general scalar-tensor theories to the Einstein frame. The coefficient of the conformal transformation in our study depends on both the scalar field and its kinetic term. Therefore, the relevant scalar-tensor theories display the subset of the class I of the degenerate higher order scalar-tensor theories in which both the scalar field and its kinetic term can nonminimally couple to gravity. We find that if the conformal coefficient ω takes a multiplicative form such that ωw(φ)W(X), where X is the kinetic term of the field φ, the theoretical predictions of the proposed model can have a usual universal attractor independent of any functions of W(X). For the case where ω takes an additive form, such that ωw(φ)+k(φ)Ξ(X), we find that there are new ζ attractors in addition to the universal ones. We analyze the inflationary observables of these models and compare them to the latest constraints from the Planck Collaboration. We find that the observable quantities associated to these new ζ attractors do not satisfy the constraints from Planck data at a strong coupling limit.
Document Type
Article
Source Type
Journal
ASJC Subject Area
Physics and Astronomy : Nuclear and High Energy Physics
Funding Agency
Thailand Center of Excellence in Physics