English

Testing inflation on all scales: a case study with $\alpha$-attractors

Cosmology and Nongalactic Astrophysics 2025-06-10 v2 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

A plethora of inflationary models can produce interesting small-scale phenomenology, such as enhanced scalar fluctuations leading to primordial black hole (PBH) production and large scalar-induced GW. Nevertheless, good models must simultaneously explain current observations on all scales. In this work, we showcase our methodology to establish the small-scale phenomenology of inflationary models on firm grounds. We consider the case of hybrid α\alpha-attractors, and focus on a reduced parameter space featuring the two potential parameters which roughly determine the position of the peak in the scalar power spectrum, Pζ\mathcal{P}_\zeta, and its amplitude. We first constrain the parameter space by comparing the large-scale predictions for Pζ\mathcal{P}_\zeta with current CMB anisotropies measurements and upper limits on μ\mu-distortions. We take into account uncertainties due to the reheating phase, and observe that the parameter-space area compatible with large-scale constraints shrinks for extended reheating stages. We then move to smaller scales, where we find that non-Gaussianity at peak scales is of the local type and has amplitude fNLO(0.1)f_\text{NL}\sim \mathcal{O}(0.1). This ensures that non-linear effects are subdominant, motivating us to employ the tree-level Pζ\mathcal{P}_\zeta to compute the abundance of PBHs and the spectrum of induced GWs for models consistent with large-scale tests. The former allows us to further constrain the parameter space, by excluding models which over-produce PBHs. We find that a subset of viable models can lead to significant production of PBHs, and a fraction of these is within reach for LISA, having a signal-to-noise ratio larger than that of astrophysical foregrounds. Our first-of-its-kind study systematically combines tests at different scales, and exploits the synergy between cosmological observations and theoretical consistency requirements.

Keywords

Cite

@article{arxiv.2412.02544,
  title  = {Testing inflation on all scales: a case study with $\alpha$-attractors},
  author = {Laura Iacconi and Michael Bacchi and Luiz Filipe Guimarães and Felipe T. Falciano},
  journal= {arXiv preprint arXiv:2412.02544},
  year   = {2025}
}

Comments

30 pages, 9 figures, version accepted for publication

R2 v1 2026-06-28T20:21:33.063Z