Changing the prior: absolute neutrino mass constraints in nonlocal gravity
arXiv:1704.04075 · doi:10.1103/PhysRevD.96.083513
Abstract
Prior change is discussed in observational constraints studies of nonlocally modified gravity. In the latter, a model characterized by a modification of the form to the Einstein-Hilbert action was compared against the base CDM one in a Bayesian way. It was found that the competing modified gravity model is significantly disfavored (at : in terms of betting-odds) against CDM given CMB+SNIa+BAO data, because of a dominant tension appearing in the - plan. We identify the underlying mechanism generating such a tension and show that it is mostly caused by the late-time, quite smooth, phantom nature of the effective dark energy described by the nonlocal model. We find possible solutions for it to be resolved and explore a given one that consists in extending the initial baseline from one massive neutrino eigenstate to three degenerate ones, whose absolute mass is allowed to take values within a reasonable prior interval. As a net effect, the absolute neutrino mass is inferred to be non-vanishing at level, best-fitting at , and the Bayesian tension disappears rendering the nonlocal gravity model statistically equivalent to CDM, given recent CMB+SNIa+BAO data. We also discuss constraints from growth rate measurements whose fit is found to be improved by a larger massive neutrino fraction as well. The -extended nonlocal model also prefers a higher value of than CDM, therefore in better agreement with local measurements.
15 pages, 4 figures, accepted in PRD
References in corpus (27)
- Unified cosmic history in modified gravity: from F(R) theory to Lorentz non-invariant models
- The Clustering of the SDSS DR7 Main Galaxy Sample I: A 4 per cent Distance Measure at z=0.15
- Bayes in the sky: Bayesian inference and model selection in cosmology
- Beyond the Cosmological Standard Model
- The trouble with
- Status and Future of Nuclear Matrix Elements for Neutrinoless Double-Beta Decay: A Review
- H0LiCOW V. New COSMOGRAIL time delays of HE0435-1223: to 3.8% precision from strong lensing in a flat CDM model
- Modified non-local-F(R) gravity as the key for the inflation and dark energy
- Cosmological perturbations and structure formation in nonlocal infrared modifications of general relativity
- Neutrinoless double beta decay and neutrino mass
- Dynamics of Nonlocal Cosmology
- Neutrino cosmology and Planck
- The 6dF Galaxy Velocity Survey: Cosmological constraints from the velocity power spectrum
- Physical effects involved in the measurements of neutrino masses with future cosmological data
- Determining with Bayesian hyper-parameters
- Nonlocal quantum gravity and M-theory
- Non-local gravity and comparison with observational datasets
- Nonlinear structure formation in Nonlocal Gravity
- Is there a concordance value for ?
- Hiding neutrino mass in modified gravity cosmologies
- Galileon: modified gravity with massive neutrinos as a testable alternative to CDM
- Running of Newton's constant and non integer powers of the d'Alembertian
- Stability analysis and future singularity of the model of non-local gravity
- Instabilities in tensorial nonlocal gravity
- Linear perturbations in K-mouflage cosmologies with massive neutrinos
- A Brief History of Curvature
- Limitations of Bayesian Evidence Applied to Cosmology
Cited by in corpus (34)
- New physics in light of the tension: an alternative view
- Testing General Relativity in Cosmology
- Non-minimal dark sector physics and cosmological tensions
- Unveiling secrets with cosmological data: neutrino masses and mass hierarchy
- Seven hints that early-time new physics alone is not sufficient to solve the Hubble tension
- Constraints on the sum of the neutrino masses in dynamical dark energy models with are tighter than those obtained in CDM
- Testing modified gravity at cosmological distances with LISA standard sirens
- Planck 2018 results. VI. Cosmological parameters
- The gravitational-wave luminosity distance in modified gravity theories
- Modified gravitational-wave propagation and standard sirens
- Revisiting a negative cosmological constant from low-redshift data
- Neutrino Mass Ordering from Oscillations and Beyond: 2018 Status and Future Prospects
- Nonlocal gravity. Conceptual aspects and cosmological predictions
- Scale-dependent galaxy bias, CMB lensing-galaxy cross-correlation, and neutrino masses
- Cosmology and dark energy from joint gravitational wave-GRB observations
- A comparison of Einstein-Boltzmann solvers for testing General Relativity
- Gaussian processes reconstruction of modified gravitational wave propagation
- Emergent Dark Energy, neutrinos and cosmological tensions
- Testing nonlocal gravity with Lunar Laser Ranging
- Gravity in the infrared and effective nonlocal models
- Nonlocal gravity and gravitational-wave observations
- DES Y1 results: Splitting growth and geometry to test CDM
- Cosmology-marginalized approaches in Bayesian model comparison: the neutrino mass as a case study
- Revival of the Deser-Woodard nonlocal gravity model: Comparison of the original nonlocal form and a localized formulation
- Observational Constraints in Nonlocal Gravity: the Deser-Woodard Case
- Cosmological discordances III: more on measure properties, Large-Scale-Structure constraints, the Hubble constant and Planck
- Primordial bouncing cosmology in the Deser-Woodard nonlocal gravity
- Positive neutrino masses with DESI DR2 via matter conversion to dark energy
- Observational status of the Galileon model general solution from cosmological data and gravitational waves
- Newtonian approximation and possible time-varying in nonlocal gravities
- Do the Spirits Rise?
- Cosmology with LIGO/Virgo dark sirens: Hubble parameter and modified gravitational wave propagation
- Cosmological model selection from standard siren detections by third-generation gravitational wave obervatories
- Does nonlocal gravity yield divergent gravitational energy-momentum fluxes?