Proton lifetime in minimal SUSY SU(5) in light of LHC results
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Abstract
We examine proton decay mediated by color-triplet Higgsinos in minimal
supersymmetric SU(5) grand unified theory in light of the discovery of the Higgs boson and
the absence of SUSY signals at the LHC. We pay special attention to various threshold
effects arising from Planck-suppressed operators that affect the color-triplet Higgsino mass
and also allow for correcting the wrong mass relations for the light fermions. Our analysis
allows for a non-universal SUSY spectrum with the third family sfermions having a separate
mass compared to the first two families. We identify the allowed parameter space of the
model and show that the SUSY scalar masses are constrained by current limits from proton
lifetime to be above 5TeV, while the glunio, Wino and the Higgsinos may be within reach
of the LHC. When the SUSY scalar masses are required to be 30TeV, so that they are
within reach of next generation collider experiments, we find that proton lifetime for the
decay p ! K+ is bounded by (p ! K+) 1.1 × 1035 yrs
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Bibliographic citation
Babu, K. S., Gogoladze, I., & Ün, C. S. (2022). Proton lifetime in minimal SUSY SU(5) in light of LHC results. In Journal of High Energy Physics (Vol. 2022, Issue 2). Springer Science and Business Media LLC. https://doi.org/10.1007/jhep02(2022)164







