Fully Constrained Majorana Neutrino Mass Matrices using (72×3)

Abstract

In 2002, two neutrino mixing ansatze having trimaximally mixed middle (2) columns, namely tri-chi-maximal mixing (T) and tri-phi-maximal mixing (TφM), were proposed. It was recently shown that T with = π16 as well as TφM with φ = π16 leads to the solution, 2 θ13 = 23 2 π16, consistent with the latest measurements of the reactor mixing angle, θ13. To obtain T(= π16) and TφM(φ= π16), we utilised the type I see-saw framework with fully constrained Majorana neutrino mass matrices. These mass matrices also resulted in a relation among the neutrino masses, m1:m2:m3=(2+2)1+2(2+2):1:(2+2)-1+2(2+2). In this paper we construct a flavour model based on the discrete group (72×3) and obtain the aforementioned results. A Majorana neutrino mass matrix (a symmetric 3×3 matrix with 6 complex degrees of freedom) is conveniently mapped into a flavon field transforming as the complex 6 dimensional representation of (72×3). Specific vacuum alignments of the flavons are used to arrive at the desired mass matrices.

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