The Status of Neutrino Cosmology: Standard $\Lambda$CDM, Extensions, and Tensions
Helena Garc\'ia Escudero, Kevork N. Abazajian

TL;DR
This paper evaluates the constraints on neutrino properties within the standard $\\Lambda$CDM model and its extensions using diverse cosmological datasets, revealing limits on neutrino masses, preferences for neutrino mass hierarchies, and implications for the Hubble tension.
Contribution
It provides updated cosmological constraints on neutrino masses, hierarchy preferences, and the role of extra relativistic species, integrating multiple datasets and analyses.
Findings
Upper limits on neutrino mass sum: 76.9-108 meV at 95% CL.
Preference for normal neutrino mass ordering at 1.47σ.
Evidence for a partially thermalized sterile neutrino at 3.3σ when including $H_0$ measurements.
Abstract
We examine the performance of the six-parameter CDM model and its extensions in light of recent cosmological observations, with particular focus on neutrino properties inferred from cosmology. Using a broad suite of nine combinations of datasets, with three separate analyses of the Planck Cosmic Microwave Background (CMB) data, and three separate supernovae (SNe) survey data, plus the recent DESI baryon acoustic oscillation (BAO) scale results, we derive constraints on the sum of neutrino masses (). Our results show upper limits in the range of to (95\% CL). The variation in the limits on arises from the separate analyses of the Planck CMB data and the separate supernovae datasets, as they relate to the inferred matter density and its relation to the sensitivity of the BAO scale…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Neutrino Physics Research · Particle physics theoretical and experimental studies
