Abundance and properties of dark radiation from the cosmic microwave background
arXiv:2503.04671 · doi:10.1088/1475-7516/2025/08/040
Abstract
We study the cosmological signatures of new light relics that are collisionless like standard neutrinos or are strongly interacting. We provide a simple and succinct rephrasing of their physical effects in the cosmic microwave background, as well as the resulting parameter degeneracies with other cosmological parameters, in terms of the total radiation abundance and the fraction thereof that freely streams. In these more general terms, interacting and noninteracting light relics are differentiated by their respective decrease and increase of the free-streaming fraction, and, moreover, the scale-dependent interplay thereof with a common, correlated reduction of the fraction of matter in baryons. We then derive updated constraints on various dark-radiation scenarios with the latest cosmological observations, employing this language to identify the physical origin of the impact of each dataset. The "PR4" reanalyses of Planck CMB data prefer a larger primordial helium yield and therefore also slightly more radiation than the 2018 analysis; we investigate the differences between the two releases that drives these shifts. Smaller free-streaming fractions are disfavored by the excess lensing of the CMB measured in lensing reconstruction data from Planck and the Atacama Cosmology Telescope. On the other hand, baryon acoustic oscillation measurements from the Dark Energy Spectroscopic Instrument drive marginal detections of new, strongly interacting light relics due to that data's preference for lower matter fractions. Finally, we forecast measurements from the CMB-S4 experiment.
31+10 pages, 22 figures. v2: minor revisions and additional explanations
References in corpus (44)
- Array Programming with NumPy
- A Comprehensive Measurement of the Local Value of the Hubble Constant with 1 km/s/Mpc Uncertainty from the Hubble Space Telescope and the SH0ES Team
- The Clustering of the SDSS DR7 Main Galaxy Sample I: A 4 per cent Distance Measure at z=0.15
- The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: Cosmological Implications from two Decades of Spectroscopic Surveys at the Apache Point observatory
- DESI 2024 VI: Cosmological Constraints from the Measurements of Baryon Acoustic Oscillations
- Cobaya: Code for Bayesian Analysis of hierarchical physical models
- The Atacama Cosmology Telescope: DR4 Maps and Cosmological Parameters
- The Cosmic Linear Anisotropy Solving System (CLASS) I: Overview
- The Atacama Cosmology Telescope: DR6 Gravitational Lensing Map and Cosmological Parameters
- The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: measurement of the BAO and growth rate of structure of the luminous red galaxy sample from the anisotropic correlation function between redshifts 0.6 and 1
- The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: measurement of the BAO and growth rate of structure of the luminous red galaxy sample from the anisotropic power spectrum between redshifts 0.6 and 1.0
- Neutrino decoupling including flavour oscillations and primordial nucleosynthesis
- The Atacama Cosmology Telescope: A Measurement of the DR6 CMB Lensing Power Spectrum and its Implications for Structure Growth
- DESI 2024 III: Baryon Acoustic Oscillations from Galaxies and Quasars
- DESI 2024 IV: Baryon Acoustic Oscillations from the Lyman Alpha Forest
- CMB power spectra and cosmological parameters from Planck PR4 with CamSpec
- Non-linear perturbation theory extension of the Boltzmann code CLASS
- Cosmological parameters derived from the final (PR4) Planck data release
- DESI 2024 VII: Cosmological Constraints from the Full-Shape Modeling of Clustering Measurements
- Interacting Dark Sector and Precision Cosmology
- Updated constraints on massive neutrino self-interactions from cosmology in light of the tension
- Interacting radiation after Planck and its implications for the Hubble Tension
- Boltzmann hierarchy for interacting neutrinos I: formalism
- Massive neutrinos and cosmic composition
- Flavor-specific Interaction Favors Strong Neutrino Self-coupling in the Early Universe
- Robustness of baryon acoustic oscillation constraints for early-Universe modifications to CDM
- Constraints on secret neutrino interactions after Planck
- Joint CMB and BBN Constraints on Light Dark Sectors with Dark Radiation
- Massive neutrino self-interactions and inflation
- Self-Interacting Neutrinos in Light of Large-Scale Structure Data
- Cosmology with varying fundamental constants from hyperlight, coupled scalars
- The two-mode puzzle: Confronting self-interacting neutrinos with the full shape of the galaxy power spectrum
- Confronting interacting dark radiation scenarios with cosmological data
- Constraining Models of Neutrino Mass and Neutrino Interactions with the Planck Satellite
- Scaling Transformations and the Origins of Light Relics Constraints from Cosmic Microwave Background Observations
- Global view of neutrino interactions in cosmology: The freestreaming window as seen by Planck
- Probing neutrino interactions and dark radiation with gravitational waves
- Dark Radiation from Neutrino Mixing after Big Bang Nucleosynthesis
- Strong constraints on a simple self-interacting neutrino cosmology
- Fiducial-Cosmology-dependent systematics for the DESI 2024 BAO Analysis
- Resonant neutrino self-interactions and the tension
- Was Entropy Conserved between BBN and Recombination?
- The Phase of the BAO on Observable Scales
- Comprehensive Constraints on Dark Radiation Injection After BBN