Quintessential α-attractors, updated
Renata Kallosh, Andrei Linde, Marina Shmakova, Yusuke Yamada
Abstract
Quintessential α-attractor models of single-field inflation and evolving dark energy were constructed about a decade ago. Recently, it was pointed out that some of them might be disfavored due to dark-radiation constraints on gravitational waves and the higher values of ns favored by ACT. Here we present a class of updated quintessential α-attractor models in which a single field describes both inflation and evolving dark energy, yields higher values of ns, and admits reheating scenarios consistent with the dark-radiation bound on ΔN eff. Depending on the value of the cosmological constant Λ, these models interpolate between ΛCDM with Λ> 0 (future dS universe), dynamical dark energy with Λ= 0 (future Minkowski universe), and dynamical dark energy with Λ< 0 (future cosmological collapse). We also study quintessential α-attractor models based on an axion-inflaton complex scalar field with hyperbolic geometry, which describe inflation and dark energy of a ``phantom illusion'' type compatible with DESI DR2.
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