English

Dark energy, $\alpha$-attractors, and large-scale structure surveys

High Energy Physics - Theory 2018-07-02 v3 Cosmology and Nongalactic Astrophysics General Relativity and Quantum Cosmology High Energy Physics - Phenomenology

Abstract

Over the last few years, a large family of cosmological attractor models has been discovered, which can successfully match the latest inflation-related observational data. Many of these models can also describe a small cosmological constant Λ\Lambda, which provides the most natural description of the present stage of the cosmological acceleration. In this paper, we study α\alpha-attractor models with dynamical dark energy, including the cosmological constant Λ\Lambda as a free parameter. Predominantly, the models with Λ>0\Lambda > 0 converge to the asymptotic regime with the equation of state w=1w=-1. However, there are some models with w1w\neq -1, which are compatible with the current observations. In the simplest models with Λ=0\Lambda = 0, one has the tensor to scalar ratio r=12αN2r=\frac{12\alpha}{N^2} and the asymptotic equation of state w=1+29αw=-1+\frac{2}{9\alpha} (which in general differs from its present value). For example, in the seven disk M-theory related model with α=7/3\alpha = 7/3 one finds r102r \sim 10^{-2} and the asymptotic equation of state is w0.9w \sim -0.9. Future observations, including large-scale structure surveys as well as B-mode detectors will test these, as well as more general models presented here. We also discuss gravitational reheating in models of quintessential inflation and argue that its investigation may be interesting from the point of view of inflationary cosmology. Such models require a much greater number of ee-folds, and therefore predict a spectral index nsn_{s} that can exceed the value in more conventional models by about 0.0060.006. This suggests a way to distinguish the conventional inflationary models from the models of quintessential inflation, even if they predict w=1w = -1.

Keywords

Cite

@article{arxiv.1712.09693,
  title  = {Dark energy, $\alpha$-attractors, and large-scale structure surveys},
  author = {Yashar Akrami and Renata Kallosh and Andrei Linde and Valeri Vardanyan},
  journal= {arXiv preprint arXiv:1712.09693},
  year   = {2018}
}

Comments

61 pages, 27 figures. v3: Improved version in response to referee's comments; added references, expanded discussion, moved some results to an appendix; conclusions unchanged

R2 v1 2026-06-22T23:30:29.003Z