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Fitting high-energy Littlest Seesaw parameters using low-energy neutrino data and leptogenesis

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arxiv 1808.01005 v2 pith:TNEJ23M6 submitted 2018-08-02 hep-ph

Fitting high-energy Littlest Seesaw parameters using low-energy neutrino data and leptogenesis

classification hep-ph
keywords neutrinolittlestseesawdatahigh-energyparametersleptogenesislow-energy
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We show that the four high-energy Littlest Seesaw parameters in the flavour basis,namely two real Yukawa couplings plus the two right-handed neutrino masses, can be determined by an excellent fit to the seven currently constrained observables of low-energy neutrino data and leptogenesis. Taking into account renormalisation group corrections, we estimate $\chi^2 \simeq 1.5-2.6$ for the three d.o.f., depending on the high-energy scale and the type of non supersymmetric Littlest Seesaw model. We extract allowed ranges of neutrino parameters from our fit data, including the approximate mu-tau symmetric predictions $\theta_{23}=45^o\pm 1^o$ and $\delta = -90^o \pm 5^o $, which, together with a normal mass ordering with $m_1=0$, will enable Littlest Seesaw models to be tested in future neutrino experiments.

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    An exhaustive scan of Δ(96) Modular Littlest Seesaw models yields 35 viable residual-symmetry patterns with new fixed PMNS columns and sharp, testable predictions beyond TM1.