Bayesian evidence for the tensor-to-scalar ratio and neutrino masses : Effects of uniform vs logarithmic priors
arXiv:2102.11511 · doi:10.1103/PhysRevD.103.123511
Abstract
We review the effect that the choice of a uniform or logarithmic prior has on the Bayesian evidence and hence on Bayesian model comparisons when data provide only a one-sided bound on a parameter. We investigate two particular examples: the tensor-to-scalar ratio of primordial perturbations and the mass of individual neutrinos , using the cosmic microwave background temperature and polarisation data from Planck 2018 and the NuFIT 5.0 data from neutrino oscillation experiments. We argue that the Kullback-Leibler divergence, also called the relative entropy, mathematically quantifies the Occam penalty. We further show how the Bayesian evidence stays invariant upon changing the lower prior bound of an upper constrained parameter. While a uniform prior on the tensor-to-scalar ratio disfavours the -extension compared to the base LCDM model with odds of about 1:20, switching to a logarithmic prior renders both models essentially equally likely. LCDM with a single massive neutrino is favoured over an extension with variable neutrino masses with odds of 20:1 in case of a uniform prior on the lightest neutrino mass, which decreases to roughly 2:1 for a logarithmic prior. For both prior options we get only a very slight preference for the normal over the inverted neutrino hierarchy with Bayesian odds of about 3:2 at most.
16 pages, 9 figures, 3 tables. Submitted to PRD. Data available at https://doi.org/10.5281/zenodo.4556360
References in corpus (11)
- The fate of hints: updated global analysis of three-flavor neutrino oscillations
- KiDS-1000 Cosmology: Multi-probe weak gravitational lensing and spectroscopic galaxy clustering constraints
- PolyChord: nested sampling for cosmology
- The Cosmic Linear Anisotropy Solving System (CLASS) I: Overview
- CMB-S4 Science Case, Reference Design, and Project Plan
- Relic neutrino decoupling with flavour oscillations revisited
- anesthetic: nested sampling visualisation
- Forecasting the Bayes factor of a future observation
- Strengthening the bound on the mass of the lightest neutrino with terrestrial and cosmological experiments
- Comment on "Strong Evidence for the Normal Neutrino Hierarchy"
- A PDF PSA, or Never gonna set_xscale again -- guilty feats with logarithms
Cited by in corpus (32)
- Nested sampling for physical scientists
- The REACH radiometer for detecting the 21-cm hydrogen signal from redshift 7.5 to 28
- Neutrino cosmology after DESI: tightest mass upper limits, preference for the normal ordering, and tension with terrestrial observations
- New constraint on the tensor-to-scalar ratio from the and BICEP/Keck Array data using the profile likelihood
- Cosmological constraints on decaying axion-like particles: a global analysis
- Cosmic shear with small scales: DES-Y3, KiDS-1000 and HSC-DR1
- Reconstruction of the neutrino mass as a function of redshift
- Neutrino mass and mass ordering: No conclusive evidence for normal ordering
- Neutrino Masses and Mass Hierarchy: Evidence for the Normal Hierarchy
- Resonant or asymmetric: The status of sub-GeV dark matter
- Quantifying the tension between cosmological and terrestrial constraints on neutrino masses
- A cosmic glitch in gravity
- A novel model-marginalized cosmological bound on the QCD axion mass
- Nonparametric reconstructions of dynamical dark energy via flexknots
- Impact of the damping tail on neutrino mass constraints
- Chasing cosmic inflation: constraints for inflationary models and reheating insights
- Constraining Quantum Initial Conditions before Inflation
- Third-order corrections to the slow-roll expansion: calculation and constraints with Planck, ACT, SPT, and BICEP/Keck
- A comparison of Bayesian sampling algorithms for high-dimensional particle physics and cosmology applications
- Robust constraints on tensor perturbations from cosmological data: a comparative analysis from Bayesian and frequentist perspectives
- Sound-Horizon-Agnostic Inference of the Hubble Constant and Neutrino Mass from BAO, CMB Lensing, and Galaxy Weak Lensing and Clustering
- Statistical significance testing for mixed priors: a combined Bayesian and frequentist analysis
- Hunting for bumps in the margins
- Massive s through the CNN lens: interpreting the field-level neutrino mass information in weak lensing
- A Bayesian Method to Mitigate the Effects of Unmodelled Time-Varying Systematics for 21-cm Cosmology Experiments
- Updated neutrino mass constraints from galaxy clustering and CMB lensing-galaxy cross-correlation measurements
- Precise interpretations of traditional fine-tuning measures
- Kernel-, mean- and noise-marginalised Gaussian processes for exoplanet transits and inference
- Alleviating the Hubble tension with Torsion Condensation (TorC)
- Capturing System Drift with Time Series Calibration for Global 21-cm Cosmology Experiments
- Finite inflation in curved space
- Improved cosmological constraints on the neutrino mass and lifetime