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Título

Bilarge neutrino mixing and Abelian flavor symmetry

AutorDing, Gui-Jun; Morisi, Stefano; Valle, José W. F. CSIC ORCID
Palabras claveRelatively large theta(13)
Lepton mass matrices
CP violation
Family symmetry
Nonzero theta (13)
Yukawa textures
Fermion masses
Quark masses
Fecha de publicación18-mar-2013
EditorAmerican Physical Society
CitaciónPhysical Review - Section D - Particles and Fields 87 (5): 053013 - 13 (2013)
ResumenWe explore two bilarge neutrino mixing Anzatze within the context of Abelian flavor symmetry theories: (BL1) sin theta(12) similar to lambda, sin theta(13) similar to lambda, sin theta(23) similar to lambda, and (BL2) sin theta(12) similar to lambda, sin theta(13) similar to lambda, sin theta(23) similar to 1 - lambda. The first pattern is proposed by two of us and is favored if the atmospheric mixing angle theta(23) lies in the first octant, while the second one is preferred for the second octant of theta(23). In order to reproduce the second texture, we find that the flavor symmetry should be U(1) x Z(m), while for the first pattern the flavor symmetry should be extended to U(1) x Z(m) x Z(n) with m and n of different parity. Explicit models for both mixing patterns are constructed based on the flavor symmetries U(1) x Z(3) x Z(4) and U(1) x Z(2). The models are extended to the quark sector within the framework of SU(5) grand unified theory in order to give a successful description of quark and lepton masses and mixing simultaneously. Phenomenological implications are discussed.
Versión del editorhttp://dx.doi.org/10.1103/PhysRevD.87.053013
URIhttp://hdl.handle.net/10261/125729
DOI10.1103/PhysRevD.87.053013
ISSN1550-7998
E-ISSN1550-2368
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