English

Limits on the cosmic neutrino background

High Energy Physics - Phenomenology 2023-01-18 v3 High Energy Physics - Experiment

Abstract

We present the first comprehensive discussion of constraints on the cosmic neutrino background (Cν\nuB) overdensity, including theoretical, experimental and cosmological limits for a wide range of neutrino masses and temperatures. Additionally, we calculate the sensitivities of future direct and indirect relic neutrino detection experiments and compare the results with the existing constraints, extending several previous analyses by taking into account that the Cν\nuB reference frame may not be aligned with that of the Earth. The Pauli exclusion principle strongly disfavours overdensities ην1\eta_\nu \gg 1 at small neutrino masses, but allows for overdensities ην125\eta_{\nu}\lesssim 125 at the KATRIN mass bound mν0.8eVm_{\nu} \simeq 0.8\,\mathrm{eV}. On the other hand, cosmology strongly favours 0.2ην3.50.2 \lesssim \eta_{\nu} \lesssim 3.5 in all scenarios. We find that direct detection proposals are capable of observing the Cν\nuB without a significant overdensity for neutrino masses mν50meVm_{\nu} \gtrsim 50\,\mathrm{meV}, but require an overdensity ην3×105\eta_{\nu} \gtrsim 3\times 10^5 outside of this range. We also demonstrate that relic neutrino detection proposals are sensitive to the helicity composition of the Cν\nuB, whilst some may be able to distinguish between Dirac and Majorana neutrinos.

Keywords

Cite

@article{arxiv.2207.12413,
  title  = {Limits on the cosmic neutrino background},
  author = {Martin Bauer and Jack D. Shergold},
  journal= {arXiv preprint arXiv:2207.12413},
  year   = {2023}
}

Comments

71 pages, 15 figures. Aligned with version published in JCAP

R2 v1 2026-06-25T01:12:58.725Z