Journal
NUCLEAR PHYSICS B
Volume 953, Issue -, Pages -Publisher
ELSEVIER
DOI: 10.1016/j.nuclphysb.2020.114950
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Funding
- FONDECYT(Chile) [1170803]
- CONICYT PIA/Basal [FB0821]
- STFC [ST/L000296/1]
- European Union [674896]
- InvisiblesPlus RISE [690575]
- STFC [ST/P000711/1, ST/L000296/1] Funding Source: UKRI
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We propose a minimal predictive inverse seesaw model based on two right-handed neutrinos and two additional singlets, leading to the same low energy neutrino mass matrix as in the Littlest Seesaw (LS) (type I) model. In order to implement such a Littlest Inverse Seesaw (LIS) model, we have used an S-4 family symmetry, together with other various symmetries, flavons and driving fields. The resulting LIS model leads to an excellent fit to the low energy neutrino parameters, including the prediction of a normal neutrino mass ordering, exactly as in the usual LS model. However, unlike the LS model, the LIS model allows charged lepton flavorviolating (CLFV) processes and lepton conversion in nuclei within reach of the forthcoming experiments. (C) 2020 The Authors. Published by Elsevier B.V.
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