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Distinguishing Dirac and Majorana neutrinos by their gravi-majoron decays

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arxiv 1905.01264 v2 pith:CIAYUKND submitted 2019-05-03 hep-ph

classification hep-ph
keywords majoranatimesdiracneutrinoneutrinosantineutrinodecaysdistinguishing
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Neutrinos may acquire small Dirac or Majorana masses by new low-energy physics in terms of the chiral gravitational anomaly, as proposed by Dvali and Funcke (2016). This model predicts fast neutrino decays, $\nu_i\to\nu_j+\phi$ and $\nu_i\to\bar{\nu}_j+\phi$, where the gravi-majorons $\phi$ are pseudoscalar Nambu-Goldstone bosons. The final-state neutrino and antineutrino distributions differ depending on the Dirac or Majorana mass of the initial state. This opens a channel for distinguishing these cases, for example in the spectrum of high-energy astrophysical neutrinos. In particular, we put bounds on the neutrino lifetimes in the Majorana case, ${\tau_2}/{m_2}> 1.1\times 10^{-3}(6.7\times 10^{-4})~{\rm s/eV}$ and ${\tau_3}/{m_3}> 2.2\times 10^{-5}(1.3\times 10^{-4})~{\rm s/eV}$ at 90% CL for hierarchical (degenerate) masses, using data from experiments searching for antineutrino appearance from the Sun.

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  1. Testing non-standard neutrino properties

    hep-ph 2025-01 unverdicted novelty 1.0 of 10

    A review of non-standard neutrino properties, summarizing proposals for dark-matter-induced mass, decays, pseudo-Dirac neutrinos, sterile neutrinos, and non-standard interactions.

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