Modular invariant models of leptons at level 7

Abstract We consider for the first time level 7 modular invariant flavour models where the lepton mixing originates from the breaking of modular symmetry and couplings responsible for lepton masses are modular forms. The latter are decomposed into irreducible multiplets of the finite modular group Γ...

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Main Authors: Gui-Jun Ding, Stephen F. King, Cai-Chang Li, Ye-Ling Zhou
Format: Article
Language:English
Published: SpringerOpen 2020-08-01
Series:Journal of High Energy Physics
Subjects:
Online Access:http://link.springer.com/article/10.1007/JHEP08(2020)164
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spelling doaj-849154e6691e40bfad3eb02a2641c9b82020-11-25T03:25:58ZengSpringerOpenJournal of High Energy Physics1029-84792020-08-012020815210.1007/JHEP08(2020)164Modular invariant models of leptons at level 7Gui-Jun Ding0Stephen F. King1Cai-Chang Li2Ye-Ling Zhou3Peng Huanwu Center for Fundamental TheoryPhysics and Astronomy, University of SouthamptonSchool of Physics, Northwest UniversityPhysics and Astronomy, University of SouthamptonAbstract We consider for the first time level 7 modular invariant flavour models where the lepton mixing originates from the breaking of modular symmetry and couplings responsible for lepton masses are modular forms. The latter are decomposed into irreducible multiplets of the finite modular group Γ7, which is isomorphic to PSL(2, Z 7), the projective special linear group of two dimensional matrices over the finite Galois field of seven elements, containing 168 elements, sometimes written as PSL2(7) or Σ(168). At weight 2, there are 26 linearly independent modular forms, organised into a triplet, a septet and two octets of Γ7. A full list of modular forms up to weight 8 are provided. Assuming the absence of flavons, the simplest modular-invariant models based on Γ7 are constructed, in which neutrinos gain masses via either the Weinberg operator or the type-I seesaw mechanism, and their predictions compared to experiment.http://link.springer.com/article/10.1007/JHEP08(2020)164Discrete SymmetriesNeutrino Physics
collection DOAJ
language English
format Article
sources DOAJ
author Gui-Jun Ding
Stephen F. King
Cai-Chang Li
Ye-Ling Zhou
spellingShingle Gui-Jun Ding
Stephen F. King
Cai-Chang Li
Ye-Ling Zhou
Modular invariant models of leptons at level 7
Journal of High Energy Physics
Discrete Symmetries
Neutrino Physics
author_facet Gui-Jun Ding
Stephen F. King
Cai-Chang Li
Ye-Ling Zhou
author_sort Gui-Jun Ding
title Modular invariant models of leptons at level 7
title_short Modular invariant models of leptons at level 7
title_full Modular invariant models of leptons at level 7
title_fullStr Modular invariant models of leptons at level 7
title_full_unstemmed Modular invariant models of leptons at level 7
title_sort modular invariant models of leptons at level 7
publisher SpringerOpen
series Journal of High Energy Physics
issn 1029-8479
publishDate 2020-08-01
description Abstract We consider for the first time level 7 modular invariant flavour models where the lepton mixing originates from the breaking of modular symmetry and couplings responsible for lepton masses are modular forms. The latter are decomposed into irreducible multiplets of the finite modular group Γ7, which is isomorphic to PSL(2, Z 7), the projective special linear group of two dimensional matrices over the finite Galois field of seven elements, containing 168 elements, sometimes written as PSL2(7) or Σ(168). At weight 2, there are 26 linearly independent modular forms, organised into a triplet, a septet and two octets of Γ7. A full list of modular forms up to weight 8 are provided. Assuming the absence of flavons, the simplest modular-invariant models based on Γ7 are constructed, in which neutrinos gain masses via either the Weinberg operator or the type-I seesaw mechanism, and their predictions compared to experiment.
topic Discrete Symmetries
Neutrino Physics
url http://link.springer.com/article/10.1007/JHEP08(2020)164
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