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arXiv:2604.14983·v1·High Energy Physics — Phenomenology

Phenomenology of Vanishing Effective Majorana Mass with a Sterile Neutrino under Cosmological and JUNO Constraints

Rushi Chambyal🇮🇳 · Tapender · Labh Singh🇮🇳 · Surender Verma🇮🇳

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Abstract

In the present work we investigate the phenomenological implications of a vanishing effective Majorana neutrino mass within a neutrino framework adding a eV-scale sterile neutrino beside three active neutrino states in light of latest cosmology driven bounds on sum of neutrino masses (). We explore the parameter space where the destructive interference between active and sterile states leads to vanishing amplitude, , of neutrinoless double beta () decay. The allowed parameter space has been identified and predictions have been obtained taking into account the latest Planck and DESI+CMB bound on . We find that these bounds restrict the sterile mixing angle and the lightest active neutrino mass. Furthermore, we incorporate the refined precision data from JUNO experiment regarding solar oscillation parameters (). We find that the sterile neutrino parameters like may not be sensitive to the JUNO precision measurements as the constraint imposed by precise is washed out by new cancellations driven through additional CP violating phases leading to vanishing .

Comments: 14 pages, 3 figures, 2 tables

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