English

Weaker yet again: mass spectrum-consistent cosmological constraints on the neutrino lifetime

High Energy Physics - Phenomenology 2022-06-17 v3 Cosmology and Nongalactic Astrophysics

Abstract

We consider invisible neutrino decay νHνl+ϕ\nu_H \to \nu_l + \phi in the ultra-relativistic limit and compute the neutrino anisotropy loss rate relevant for the cosmic microwave background (CMB) anisotropies. Improving on our previous work which assumed massless νl\nu_l and ϕ\phi, we reinstate in this work the daughter neutrino mass mνlm_{\nu l} in a manner consistent with the experimentally determined neutrino mass splittings. We find that a nonzero mνlm_{\nu l} introduces a new phase space factor in the loss rate ΓT\Gamma_{\rm T} proportional to (Δmν2/mνH2)2(\Delta m_\nu^2/m_{\nu_H}^2)^2 in the limit of a small squared mass gap between the parent and daughter neutrinos, i.e., ΓT(Δmν2/mνH2)2(mνH/Eν)5(1/τ0)\Gamma_{\rm T} \sim (\Delta m_\nu^2/m_{\nu H}^2)^2 (m_{\nu H}/E_\nu )^5 (1/\tau_0), where τ0\tau_0 is the νH\nu_H rest-frame lifetime. Using a general form of this result, we update the limit on τ0\tau_0 using the Planck 2018 CMB data. We find that for a parent neutrino of mass mνH0.1eVm_{\nu H} \lesssim 0.1 {\rm eV}, the new phase space factor weakens the constraint on its lifetime by up to a factor of 50 if Δmν2\Delta m_\nu^2 corresponds to the atmospheric mass gap and up to 10510^{5} if the solar mass gap, in comparison with naive estimates that assume mνl=0m_{\nu l}=0. The revised constraints are (i) τ0(610)×105 s\tau^0 \gtrsim (6 \to 10) \times 10^5~{\rm s} and τ0(400500) s\tau^0 \gtrsim (400 \to 500)~{\rm s} if only one neutrino decays to a daughter neutrino separated by, respectively, the atmospheric and the solar mass gap, and (ii) τ0(23)×107 s\tau^0 \gtrsim (2 \to 3) \times 10^7~{\rm s} in the case of two decay channels with one near-common atmospheric mass gap. In contrast to previous, naive limits which scale as mνH5m_{\nu H}^5, these mass spectrum-consistent τ0\tau_0 constraints are remarkably independent of the parent mass and open up a swath of parameter space within the projected reach of IceCube and other neutrino telescopes in the next two decades.

Keywords

Cite

@article{arxiv.2203.09075,
  title  = {Weaker yet again: mass spectrum-consistent cosmological constraints on the neutrino lifetime},
  author = {Joe Zhiyu Chen and Isabel M. Oldengott and Giovanni Pierobon and Yvonne Y. Y. Wong},
  journal= {arXiv preprint arXiv:2203.09075},
  year   = {2022}
}

Comments

23 pages, 6 figures. v3 accepted for publication by EPJC. Updated the paragraph explaining the separable ansatz on page 5 and added some extra text and equations in appendix B for the Legendre polynomials expansion. Minor additions and small correction to figure 3 bounds