paper

A bound on thermal y-distortion of the cosmic neutrino background

arXiv:2407.18102

Abstract

We consider the possibility that the cosmic neutrino background might have a nonthermal spectrum, and investigate its effect on cosmological parameters relative to standard -Cold Dark Matter (CDM) cosmology. As a specific model, we consider a thermal -distortion, which alters the distribution function of the neutrino background by depleting the population of low-energy neutrinos and enhancing the high-energy tail. We constrain the thermal -parameter of the cosmic neutrino background using Cosmic Microwave Background (CMB) and Baryon Acoustic Oscillation (BAO) measurements, and place a -confidence upper bound of . The -parameter increases the number of effective relativistic degrees of freedom, reducing the sound horizon radius and increasing the best-fit value for the Hubble constant . We obtain an upper bound on the Hubble constant of at confidence, substantially reducing the tension between CMB/BAO constraints and direct measurement of the expansion rate from Type-Ia supernovae. Including a spectral distortion also allows for a higher value of the spectral index of scalar fluctuations, with a best-fit of , and a -confidence upper bound of .

10 pages, 4 figures (V2: Version submitted to journal.)