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arXiv:2311.00524·v1·Cosmology and Nongalactic Astrophysics

Improved Planck constraints on axion-like early dark energy as a resolution of the Hubble tension

George Efstathiou🇬🇧 · Erik Rosenberg🇬🇧 · Vivian Poulin🇫🇷

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Abstract

Axion-like early dark energy (EDE) as an extension to CDM has been proposed as a possible solution to the 'Hubble tension'. We revisit this model using a new cosmic microwave background (CMB) temperature and polarization likelihood constructed from the {\it Planck} NPIPE data release. In a Bayesian analysis, we find that the maximum fractional contribution of EDE to the total energy density is (without SH0ES) over the redshift range and that the Hubble constant is constrained to lie within the range km/s/Mpc (both at 95 \% C.L.). The data therefore favour a model close to CDM, leaving a residual tension of with the SHES Cepheid-based measurement of . A comparison with the likelihood profile shows that our conclusions are robust to prior-volume effects. Our new CMB likelihood provides no evidence in favour of a significant EDE component.

Comments: 4 pages, 3 figures, comments welcome

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