English

Strong Bayesian Evidence for the Normal Neutrino Hierarchy

Cosmology and Nongalactic Astrophysics 2019-04-15 v2 High Energy Physics - Phenomenology

Abstract

The configuration of the three neutrino masses can take two forms, known as the normal and inverted hierarchies. We compute the Bayesian evidence associated with these two hierarchies. Previous studies found a mild preference for the normal hierarchy, and this was driven by the asymmetric manner in which cosmological data has confined the available parameter space. Here we identify the presence of a second asymmetry, which is imposed by data from neutrino oscillations. By combining constraints on the squared-mass splittings with the limit on the sum of neutrino masses of Σmν<0.13\Sigma m_\nu < 0.13 eV, and using a minimally informative prior on the masses, we infer odds of 42:1 in favour of the normal hierarchy, which is classified as "strong" in the Jeffreys' scale. We explore how these odds may evolve in light of higher precision cosmological data, and discuss the implications of this finding with regards to the nature of neutrinos. Finally the individual masses are inferred to be m1=3.803.73+26.2meV,m2=8.81.2+18meV,m3=50.41.2+5.8meVm_1 = 3.80^{+26.2}_{-3.73} \, \text{meV}, m_2 = 8.8^{+18}_{-1.2} \, \text{meV}, m_3 = 50.4^{+5.8}_{-1.2} \, \text{meV} (95%95\% credible intervals).

Keywords

Cite

@article{arxiv.1703.03425,
  title  = {Strong Bayesian Evidence for the Normal Neutrino Hierarchy},
  author = {Fergus Simpson and Raul Jimenez and Carlos Pena-Garay and Licia Verde},
  journal= {arXiv preprint arXiv:1703.03425},
  year   = {2019}
}

Comments

Matches accepted version in JCAP. We provide publicly available priors for forthcoming investigations https://github.com/frgsimpson/neutrino-priors Conclusions with regard to the hierarchy are unchanged: we show that current data robustly prefer the normal hierarchy, by employing the least informative priors, with strong bayesian odds

R2 v1 2026-06-22T18:41:36.417Z