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Beyond Δm2: Absolute Mass Sensitivity in Neutrino Oscillations

Gustavo F. S. Alves, André L. C. de Gouvêa, Joshua Kaler, Shirley Weishi Li, Pedro A. N. Machado

hep-pharXiv:2608.13736

Abstract

Conventional wisdom says that neutrino oscillations measure only mass-squared differences and not the absolute neutrino mass scale. This is true, however, only at leading order in the expansion parameters mi/E, the ratios of the neutrino masses mi (i=1,2,3) to the neutrino energy E. At next-to-leading order, the oscillation phase includes terms proportional to mi4-mj4 = Δm2ij(mi2+mj2), and is therefore sensitive to the absolute mass scale. In this paper, we derive the next-to-leading-order corrections using a wave-packet treatment and taking into account the neutrino-production kinematics. We then apply this result to reactor antineutrinos and find that the JUNO experiment is sensitive to neutrino masses of a few hundred keV. While not competitive with existing bounds from beta decay, electron capture, and cosmology, neutrino oscillations provide a novel, complementary probe of the neutrino mass scale, with sensitivity to a different combination of neutrino masses.

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