English

R-Symmetric Flipped SU(5)

High Energy Physics - Phenomenology 2020-12-30 v1

Abstract

We construct a supersymmetric flipped SU(5) grand unified model that possesses an RR symmetry. This RR symmetry forbids dangerous non-renormalizable operators suppressed by a cut-off scale up to sufficiently large mass dimensions so that the SU(5)-breaking Higgs field develops a vacuum expectation value of the order of the unification scale along the FF- and DD-flat directions, with the help of the supersymmetry-breaking effect. The mass terms of the Higgs fields are also forbidden by the RR symmetry, with which the doublet-triplet splitting problem is solved with the missing partner mechanism. The masses of right-handed neutrinos are generated by non-renormalizable operators, which then yield a light neutrino mass spectrum and mixing through the seesaw mechanism that are consistent with neutrino oscillation data. This model predicts one of the color-triplet Higgs multiplets to lie at an intermediate scale, and its mass is found to be constrained by proton decay experiments to be 5×1011\gtrsim 5 \times 10^{11} GeV. If it is 1012\lesssim 10^{12} GeV, future proton decay experiments at Hyper-Kamiokande can test our model in the pπ0μ+p \to \pi^0 \mu^+ and pK0μ+p \to K^0 \mu^+ decay modes, in contrast to ordinary grand unified models where pπ0e+p \to \pi^0 e^+ or pK+νˉp \to K^+ \bar{\nu} is the dominant decay mode. This characteristic prediction for the proton decay branches enables us to distinguish our model from other scenarios.

Keywords

Cite

@article{arxiv.2008.08940,
  title  = {R-Symmetric Flipped SU(5)},
  author = {Koichi Hamaguchi and Shihwen Hor and Natsumi Nagata},
  journal= {arXiv preprint arXiv:2008.08940},
  year   = {2020}
}

Comments

30 pages, 2 figures

R2 v1 2026-06-23T17:59:21.130Z