English

Unraveling the Dirac Neutrino with Cosmological and Terrestrial Detectors

High Energy Physics - Phenomenology 2021-10-27 v3 Cosmology and Nongalactic Astrophysics High Energy Physics - Experiment

Abstract

We point out a correlation between the effective number of relativistic degrees of species ΔNeff\Delta N_\text{eff}, the cosmologically measured mν,sterileeffm_{\nu,\text{sterile}}^{\text{eff}}, and the terrestrially measured neutrino mass sum and effective electron neutrino mass, Σmν\Sigma m_\nu and mνem_{\nu_e}, which arises in the Dirac neutrino hypothesis. If the neutrinos are Dirac particles, and if the active neutrinos' sterile partners were once thermalized in the early universe, then this new cosmological relic would simultaneously contribute to the effective number of relativistic species, ΔNeff\Delta N_\text{eff}, and also lead to a correlation between the cosmologically-measured effective sterile neutrino mass mν,sterileeffm_{\nu,\text{sterile}}^\text{eff} and the terrestrially-measured active neutrino mass sum Σmν\Sigma m_\nu. We emphasize that specifically correlated deviations in ΔNeff3\Delta N_\text{eff}\gtrsim 3, mν,sterileeffm_{\nu,\text{sterile}}^\text{eff} and Σmν\Sigma m_\nu above their standard predictions could be the harbinger revealing the Dirac nature of neutrinos. We provide several benchmark examples, including Dirac leptogenesis, that predict a thermal relic population of the sterile partners, and we discuss the relevant observational prospects with current and near-future experiments. If the correlation highlighted in this work is observed in future surveys, it could be interpreted as supporting evidence of Dirac neutrino masses.

Keywords

Cite

@article{arxiv.2009.07852,
  title  = {Unraveling the Dirac Neutrino with Cosmological and Terrestrial Detectors},
  author = {Peter Adshead and Yanou Cui and Andrew J. Long and Michael Shamma},
  journal= {arXiv preprint arXiv:2009.07852},
  year   = {2021}
}

Comments

10 pages, 2 figures; v3: references added, $m_{\nu,\text{sterile}}^{\text{eff}}$ is variable correlated with $\Delta N_\text{eff}$ and $\Sigma m_\nu$, figures updated to include benchmark models. Version matches that published in Physics Letters B