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arXiv:2402.01560·v1·Cosmology and Nongalactic Astrophysics

Testing -attractor quintessential inflation against CMB and low-redshift data

William Giarè🇬🇧 · Eleonora Di Valentino🇬🇧 · Eric V. Linder🇺🇸 · Enrico Specogna🇬🇧

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Abstract

Due to universality and attractor properties, -attractor quintessential inflation establishes direct relations between inflationary observables such as the scalar tilt and the tensor-to-scalar ratio , and late-time dark energy equation of state parameters and . In this work, we examine three different physically motivated regimes, considering complete freedom in the parameter , models inspired by supergravity where takes on values up to , and Starobinsky inflation (). We investigate the consistency and constraints imposed by Cosmic Microwave Background measurements from the Planck satellite, B-mode polarization data from the BICEP/Keck collaboration, and low-redshift observations. Additionally, we consider small-scale CMB measurements released by the Atacama Cosmology Telescope, which give results approaching the Harrison-Zel'dovich spectrum (). Here -attractors lead to an improved fit over CDM. For the large-scale CMB measurements, models can provide equally good fits as CDM.

Comments: 25 pages, 6 figures, 9 tables

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