Nucleon decay in a minimal non-SUSY GUT with predicted quark-lepton Yukawa ratios
DOI10.1016/j.nuclphysb.2022.115719zbMath1489.81061arXiv2108.08080OpenAlexW3194451088MaRDI QIDQ2121314
Publication date: 4 April 2022
Published in: Nuclear Physics. B (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2108.08080
Monte Carlo methods (65C05) Representation theory for linear algebraic groups (20G05) Unified quantum theories (81V22) Nuclear physics (81V35) Strong interaction, including quantum chromodynamics (81V05) Unitary representations of locally compact groups (22D10) Weak interaction in quantum theory (81V15) Dynamic renormalization group methods applied to problems in time-dependent statistical mechanics (82C28) Yang-Mills and other gauge theories in mechanics of particles and systems (70S15) Fermionic systems in quantum theory (81V74) Particle decays (81U90)
Related Items (2)
Cites Work
- Threshold corrections to dimension-six proton decay operators in non-minimal SUSY \(\operatorname{SU}(5)\) GUTs
- Renormalizable adjoint
- Trimaximal mixing with predicted \(\theta_{13}\) from a new type of constrained sequential dominance
- Right unitarity triangles and tri-bimaximal mixing from discrete symmetries and unification
- Seesaw at LHC
- \(\Theta_{13}^{\text{PMNS}}=\Theta_C/\sqrt{2}\) from GUTs
- A flavour GUT model with \({\theta}_{13}^{PMNS}\simeq {\theta}_C/\sqrt{2}\)
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