New Interpretations of the Cosmological Preference for a Negative Neutrino Mass
arXiv:2508.20999 · doi:10.1103/1bqb-qlrj
Abstract
Recent observations of the cosmic microwave background (CMB) and baryon acoustic oscillations (BAO) show some tension with a CDM cosmology. For one, the cosmological parameters determined by the CMB are at odds with the expansion history determined by latest BAO measurements. In addition, the combined data has placed uncomfortably strong constraints on neutrino mass. Both effects can be interpreted as negative neutrino mass, one describing the change to the expansion history and the other one describing enhanced lensing. In this paper, we show the current tensions can be solved with a single change either to the lensing of the CMB or the expansion of the universe. We show additional lensing could arise from a variety of models with new light fields. However, these models rarely give the same signal in temperature and polarization, giving a concrete test of the scenario. Alternatively, dark sector models can explain the changes to the expansion by changing the evolution of the matter density. These models introduce new forces, giving rise to long range signals in the three-point statistics of galaxies. We discuss a range of other examples which all illustrate the pattern that additional signals should appear if these tensions are explained by beyond the Standard Model physics.
53+6 pages, 12 figures; v2: Updated to match published version
References in corpus (62)
- SciPy 1.0--Fundamental Algorithms for Scientific Computing in Python
- Array Programming with NumPy
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- 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
- DESI 2024 VI: Cosmological Constraints from the Measurements of Baryon Acoustic Oscillations
- Massive neutrinos and cosmology
- Cosmic Reionization and Early Star-Forming Galaxies: A Joint Analysis of New Constraints from Planck and Hubble Space Telescope
- Cobaya: Code for Bayesian Analysis of hierarchical physical models
- DESI DR2 Results II: Measurements of Baryon Acoustic Oscillations and Cosmological Constraints
- Model-independent evidence in favor of an end to reionization by z~6
- Evidence of patchy hydrogen reionization from an extreme Ly trough below redshift six
- The Atacama Cosmology Telescope: DR6 Gravitational Lensing Map and Cosmological Parameters
- Planck intermediate results. LVII. Joint Planck LFI and HFI data processing
- Towards a precision calculation of in the Standard Model II: Neutrino decoupling in the presence of flavour oscillations and finite-temperature QED
- Neutrino decoupling including flavour oscillations and primordial nucleosynthesis
- A precision calculation of relic neutrino decoupling
- New Extraction of the Cosmic Birefringence from the Planck 2018 Polarization Data
- The Atacama Cosmology Telescope: A Measurement of the DR6 CMB Lensing Power Spectrum and its Implications for Structure Growth
- GetDist: a Python package for analysing Monte Carlo samples
- Neutrino mass from Cosmology
- DESI 2024 VII: Cosmological Constraints from the Full-Shape Modeling of Clustering Measurements
- New physics from the polarised light of the cosmic microwave background
- CLASS: The Cosmology Large Angular Scale Surveyor
- Cosmic Birefringence from Planck Data Release 4
- Tidal Tails Test the Equivalence Principle in the Dark Sector
- Improved Constraints on Cosmic Birefringence from the WMAP and Planck Cosmic Microwave Background Polarization Data
- The quantum mechanics of perfect fluids
- Minimal Warm Inflation
- Direct neutrino-mass measurement based on 259 days of KATRIN data
- Effective Lagrangian and Topological Interactions in Supersolids
- Neutrino physics from precision cosmology
- Galilean Equivalence for Galactic Dark Matter
- Precision Gravity Tests and the Einstein Equivalence Principle
- Cosmology of axion dark matter
- Reionization optical depth determination from Planck HFI data with ten percent accuracy
- Reionization after JWST: a photon budget crisis?
- Frequency-Dependent Constraints on Cosmic Birefringence from the LFI and HFI Planck Data Release 4
- Cosmology From CMB Lensing and Delensed EE Power Spectra Using 2019-2020 SPT-3G Polarization Data
- Constraining a spatially dependent rotation of the Cosmic Microwave Background Polarization
- Massive neutrinos and cosmic composition
- Unveiling dark fifth forces with linear cosmology
- Galaxy Satellites and the Weak Equivalence Principle
- Mitigating the optical depth degeneracy using the kinematic Sunyaev-Zel'dovich effect with CMB-S4
- Biased Tracers of Two Fluids in the Lagrangian Picture
- Measuring the reionization optical depth without large-scale CMB polarization
- Baryonic feedback biases on fundamental physics from lensed CMB power spectra
- Searching for axion-like time-dependent cosmic birefringence with data from SPT-3G
- BICEP / Keck XIV: Improved constraints on axion-like polarization oscillations in the cosmic microwave background
- Unveiling dark forces with measurements of the Large Scale Structure of the Universe
- Profile Likelihoods in Cosmology: When, Why and How illustrated with CDM, Massive Neutrinos and Dark Energy
- Light Fields during Inflation from BOSS and Future Galaxy Surveys
- Avoiding baryonic feedback effects on neutrino mass measurements from CMB lensing
- Constraints on axion-like polarization oscillations in the cosmic microwave background with POLARBEAR
- BICEP / Keck XII: Constraints on axion-like polarization oscillations in the cosmic microwave background
- Positive neutrino masses with DESI DR2 via matter conversion to dark energy
- From 100 kpc to 10 Gpc: Dark Matter self-interactions before and after DESI
- The Phase of the BAO on Observable Scales
- Free-Streaming Neutrinos and Their Phase Shift in Current and Future CMB Power Spectra
- Constraints on from Planck temperature and polarization
- Constraints on the Optical Depth to Reionization from Balloon-Borne CMB Measurements
- Coherent Self-Interactions of Dark Matter in the Bullet Cluster
- Cosmic Neutrino Decoupling and its Observable Imprints: Insights from Entropic-Dual Transport