Recent encouraging experimental results on neutrino mixing parameters prompt further investigation on SO(10)- inspired leptogenesis and on the associated strong thermal solution that has correctly predicted a non-vanishing reactor mixing angle, it further predicts sin delta less than or similar to 0, now supported by recent results at similar to 95% C. L., normally ordered neutrino masses and atmospheric mixing angle in the first octant, best fit results in latest global analyses. Extending a recent analytical procedure, we account for the mismatch between the Yukawa basis and the weak basis, that in SO(10)-inspired models is described by a CKM-like unitary transformation V-L, obtaining a full analytical solution that provides useful insight and reproduces accurately all numerical results, paving the way for future inclusion of different sources of theoretical uncertainties and for a statistical analysis of the constraints. We show how muon-dominated solutions appear for large values of the lightest neutrino mass in the range (0 : 01-1) eV but also how they necessarily require a mild fine tuning in the seesaw relation. For the dominant (and untuned) tauon-dominated solutions we show analytically how, turning on V-L similar or equal to V-CKM, some of the constraints on the low energy neutrino parameters get significantly relaxed. In particular we show how the upper bound on the atmospheric neutrino mixing angle in the strong thermal solution gets relaxed from theta(23) less than or similar to 41 degrees to theta(23) less than or similar to 44 degrees, an important e ff ect in the light of the most recent NO upsilon A, T2K and IceCube results.

A full analytic solution of SO(10)-inspired leptogenesis / Di Bari, P; Re Fiorentin, M. - In: JOURNAL OF HIGH ENERGY PHYSICS. - ISSN 1029-8479. - ELETTRONICO. - 2017:10(2017). [10.1007/JHEP10(2017)029]

A full analytic solution of SO(10)-inspired leptogenesis

Re Fiorentin, M
2017

Abstract

Recent encouraging experimental results on neutrino mixing parameters prompt further investigation on SO(10)- inspired leptogenesis and on the associated strong thermal solution that has correctly predicted a non-vanishing reactor mixing angle, it further predicts sin delta less than or similar to 0, now supported by recent results at similar to 95% C. L., normally ordered neutrino masses and atmospheric mixing angle in the first octant, best fit results in latest global analyses. Extending a recent analytical procedure, we account for the mismatch between the Yukawa basis and the weak basis, that in SO(10)-inspired models is described by a CKM-like unitary transformation V-L, obtaining a full analytical solution that provides useful insight and reproduces accurately all numerical results, paving the way for future inclusion of different sources of theoretical uncertainties and for a statistical analysis of the constraints. We show how muon-dominated solutions appear for large values of the lightest neutrino mass in the range (0 : 01-1) eV but also how they necessarily require a mild fine tuning in the seesaw relation. For the dominant (and untuned) tauon-dominated solutions we show analytically how, turning on V-L similar or equal to V-CKM, some of the constraints on the low energy neutrino parameters get significantly relaxed. In particular we show how the upper bound on the atmospheric neutrino mixing angle in the strong thermal solution gets relaxed from theta(23) less than or similar to 41 degrees to theta(23) less than or similar to 44 degrees, an important e ff ect in the light of the most recent NO upsilon A, T2K and IceCube results.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2974218