The Atacama Cosmology Telescope: Constraints on Pre-Recombination Early Dark Energy
Abstract
The early dark energy (EDE) scenario aims to increase the value of the Hubble constant () inferred from cosmic microwave background (CMB) data over that found in CDM, via the introduction of a new form of energy density in the early universe. The EDE component briefly accelerates cosmic expansion just prior to recombination, which reduces the physical size of the sound horizon imprinted in the CMB. Previous work has found that non-zero EDE is not preferred by Planck CMB power spectrum data alone, which yield a 95% confidence level (CL) upper limit on the maximal fractional contribution of the EDE field to the cosmic energy budget. In this paper, we fit the EDE model to CMB data from the Atacama Cosmology Telescope (ACT) Data Release 4. We find that a combination of ACT, large-scale Planck TT (similar to WMAP), Planck CMB lensing, and BAO data prefers the existence of EDE at % CL: , with km/s/Mpc (both 68% CL). From a model-selection standpoint, we find that EDE is favored over CDM by these data at roughly significance. In contrast, a joint analysis of the full Planck and ACT data yields no evidence for EDE, as previously found for Planck alone. We show that the preference for EDE in ACT alone is driven by its TE and EE power spectrum data. The tight constraint on EDE from Planck alone is driven by its high- TT power spectrum data. Understanding whether these differing constraints are physical in nature, due to systematics, or simply a rare statistical fluctuation is of high priority. The best-fit EDE models to ACT and Planck exhibit coherent differences across a wide range of multipoles in TE and EE, indicating that a powerful test of this scenario is anticipated with near-future data from ACT and other ground-based experiments.
Keywords
Cite
@article{arxiv.2109.04451,
title = {The Atacama Cosmology Telescope: Constraints on Pre-Recombination Early Dark Energy},
author = {J. Colin Hill and Erminia Calabrese and Simone Aiola and Nicholas Battaglia and Boris Bolliet and Steve K. Choi and Mark J. Devlin and Adriaan J. Duivenvoorden and Jo Dunkley and Simone Ferraro and Patricio A. Gallardo and Vera Gluscevic and Matthew Hasselfield and Matt Hilton and Adam D. Hincks and Renee Hlozek and Brian J. Koopman and Arthur Kosowsky and Adrien La Posta and Thibaut Louis and Mathew S. Madhavacheril and Jeff McMahon and Kavilan Moodley and Sigurd Naess and Umberto Natale and Federico Nati and Laura Newburgh and Michael D. Niemack and Lyman A. Page and Bruce Partridge and Frank J. Qu and Maria Salatino and Alessandro Schillaci and Neelima Sehgal and Blake D. Sherwin and Cristobal Sifon and David N. Spergel and Suzanne T. Staggs and Emilie R. Storer and Alexander van Engelen and Eve M. Vavagiakis and Edward J. Wollack and Zhilei Xu},
journal= {arXiv preprint arXiv:2109.04451},
year = {2022}
}
Comments
v1: 25+20 pages, 6+18 figures, submitted to PRD; v2: 26+20 pages, 7+18 figures, results unchanged, matches PRD accepted version. MCMC chains available at https://lambda.gsfc.nasa.gov/product/act/actpol_mcmc_chains_get.html