Pith. sign in

Inflation, Open Universes, and Dark Energy

1 Pith paper cite this work. Polarity classification is still indexing.

1 Pith paper citing it
abstract

We study the impact of spatial curvature ($\Omega_k$) and dynamical dark energy (parametrized by $w_0$ and $w_a$) on the spectral index $n_s$ using a combination of cosmic microwave background datasets (Planck, SPT, and ACT), and spectroscopic galaxy samples from DESI, including both BAO and full-shape clustering measurements. We show that a small negative curvature, $\Omega_k\simeq 3\times 10^{-3}$, lowers the value of $n_s$, bringing it closer to predictions of the Starobinsky, Higgs, and simplest $\alpha$-attractor inflationary models. In particular, we find $n_s= 0.9667\pm0.0041$ (using Planck and DESI data) or $n_s= 0.9692\pm0.0035$ (adding ACT and SPT). Allowing for time-evolving dark energy also reduces the spectral index, leading to $n_s=0.9716\pm0.0032$ (from the combined dataset), or $n_s=0.9694\pm0.0035$ in combination with a small negative curvature. Our results demonstrate that the tension between current observational data and the Starobinsky, Higgs, and simplest $\alpha$-attractor models holds only for $\Lambda$CDM, and can be mitigated in extended cosmological models. We discuss implications of these findings for inflationary models in an open universe and/or with dynamical dark energy, including scenarios with quantum tunneling and non-standard topology. Furthermore, we briefly describe a special class of $\alpha$-attractor models, where one can make $n_s$ arbitrarily large, and we describe the $\alpha$-attractor quintessence model. Such models may be of particular relevance when future data from DESI, as well as DESI-II, SPHEREx, Euclid, Rubin, and Roman, becomes available.

fields

astro-ph.CO 1

years

2026 1

verdicts

ACCEPT 1

representative citing papers

Waterfall-modulated $\alpha$-attractors

astro-ph.CO · 2026-08-13 · accept · novelty 5.0

Waterfall steps in single-field alpha-attractor potentials increase the effective number of e-folds, raising ns toward 1 and lowering r along the curve r = 3 alpha (1 - ns)^2.

citing papers explorer

Showing 1 of 1 citing paper.

  • Waterfall-modulated $\alpha$-attractors astro-ph.CO · 2026-08-13 · accept · none · ref 15 · internal anchor

    Waterfall steps in single-field alpha-attractor potentials increase the effective number of e-folds, raising ns toward 1 and lowering r along the curve r = 3 alpha (1 - ns)^2.