High-dimensional neutrino masses

被引:0
作者
Gaetana Anamiati
Oscar Castillo-Felisola
Renato M. Fonseca
J. C. Helo
M. Hirsch
机构
[1] AHEP Group,Institute of Particle and Nuclear Physics Faculty of Mathematics and Physics
[2] Instituto de Física Corpuscular — CSIC/Universitat de València,Departamento de Física, Facultad de Ciencias
[3] Universidad Técnica Federico Santa María,undefined
[4] Centro-Cientıfico-Tecnológico de Valparaíso,undefined
[5] Charles University,undefined
[6] Universidad de La Serena,undefined
来源
Journal of High Energy Physics | / 2018卷
关键词
Beyond Standard Model; Neutrino Physics;
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摘要
For Majorana neutrino masses the lowest dimensional operator possible is the Weinberg operator at d = 5. Here we discuss the possibility that neutrino masses originate from higher dimensional operators. Specifically, we consider all tree-level decompositions of the d = 9, d = 11 and d = 13 neutrino mass operators. With renormalizable interactions only, we find 18 topologies and 66 diagrams for d = 9, and 92 topologies plus 504 diagrams at the d = 11 level. At d = 13 there are already 576 topologies and 4199 diagrams. However, among all these there are only very few genuine neutrino mass models: At d = (9, 11, 13) we find only (2,2,2) genuine diagrams and a total of (2,2,6) models. Here, a model is considered genuine at level d if it automatically forbids lower order neutrino masses without the use of additional symmetries. We also briefly discuss how neutrino masses and angles can be easily fitted in these high-dimensional models.
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