A grounded perspective on New Early Dark Energy using ACT, SPT, and BICEP/Keck
arXiv:2209.02708 · doi:10.1088/1475-7516/2023/02/041
Abstract
We examine further the ability of the New Early Dark Energy model (NEDE) to resolve the current tension between the Cosmic Microwave Background (CMB) and local measurements of and the consequences for inflation. We perform new Bayesian analyses, including the current datasets from the ground-based CMB telescopes Atacama Cosmology Telescope (ACT), the South Pole Telescope (SPT), and the BICEP/Keck telescopes, employing an updated likelihood for the local measurements coming from the SES collaboration. Using the SES prior on , the combined analysis with Baryonic Acoustic Oscillations (BAO), Pantheon, Planck and ACT improves the best-fit by with respect to CDM, favors a non-zero fractional contribution of NEDE, , by , and gives a best-fit value for the Hubble constant of km/s/Mpc (mean with C.L.). A similar analysis using SPT instead of ACT yields consistent results with a over CDM, a preference for non-zero of and a best-fit value of km/s/Mpc (mean with C.L.). We also provide the constraints on the inflation parameters and coming from NEDE, including the BICEP/Keck 2018 data, and show that the allowed upper value on the tensor-scalar ratio is consistent with the CDM bound, but, as also originally found, with a more blue scalar spectrum implying that the simplest curvaton model is now favored over the Starobinsky inflation model.
32 pages, 10 figures, 14 tables, Journal version -- updated all figures and text with minor changes, conclusions unchanged
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