English

Bottom-up approach to texture zeros in the neutrino mass matrix

High Energy Physics - Phenomenology 2026-01-22 v2

Abstract

We investigate one and two texture zeros in the neutrino mass matrix using the latest oscillation data through a bottom-up approach. In this context, we begin by estimating the detailed features of each matrix element by varying the CP violating phases within (0,2π)(0,\,2\pi), the lowest neutrino mass within (0,1)eV(0,\,1)\,{\rm eV} and the neutrino oscillation parameters such as three mixing angles and the two mass squared differences within 3σ3\sigma of their central values. We find that for normal ordering, only eeee, eμe\mu and eτe\tau elements of the mass matrix can vanish, whereas, for inverted ordering, five elements -- eμe\mu, eτe\tau, μμ\mu\mu, μτ\mu\tau and ττ\tau\tau -- can vanish. For two texture zeros, only (ee,eμ=0)(ee,\, e\mu = 0) and (ee,eτ=0)(ee,\, e\tau =0) are allowed in case of normal ordering. For a particular vanishing element, we also estimate the range of the lowest neutrino mass and the CP violating phases. In particular, very interesting correlation among the CP violating phases and the lowest neutrino mass is obtained for each vanishing cases.

Keywords

Cite

@article{arxiv.2409.04756,
  title  = {Bottom-up approach to texture zeros in the neutrino mass matrix},
  author = {Iffat Ara Mazumder and Rupak Dutta},
  journal= {arXiv preprint arXiv:2409.04756},
  year   = {2026}
}

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24 pages