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750 GeV Diphotons: Implications for Supersymmetric Unification II

High Energy Physics - Phenomenology 2016-08-24 v1 High Energy Physics - Experiment

Abstract

Perturbative supersymmetric gauge coupling unification is possible in six theories where complete SU(5) TeV-scale multiplets of vector matter account for the size of the reported 750 GeV750~{\rm GeV} diphoton resonance, interpreted as a singlet multiplet S=(s+ia)/2S = (s+ia)/\sqrt{2}. One of these has a full generation of vector matter and a unified gauge coupling αG1\alpha_G \sim 1. The diphoton signal rate is enhanced by loops of vector squarks and sleptons, especially when the trilinear AA couplings are large. If the SHuHdSH_u H_d coupling is absent, both ss and aa can contribute to the resonance, which may then have a large apparent width if the mass splitting from ss and aa arises from loops of vector matter. The width depends sensitively on AA parameters and phases of the vector squark and slepton masses. Vector quarks and/or squarks are expected to be in reach of the LHC. If the SHuHdSH_uH_d coupling is present, aa leads to a narrow diphoton resonance, while a second resonance with decays shh,W+W,ZZs \rightarrow hh, W^+ W^-,ZZ is likely to be discovered at future LHC runs. In some of the theories a non-standard origin or running of the soft parameters is required, for example involving conformal hidden sector interactions.

Keywords

Cite

@article{arxiv.1605.03585,
  title  = {750 GeV Diphotons: Implications for Supersymmetric Unification II},
  author = {Lawrence J. Hall and Keisuke Harigaya and Yasunori Nomura},
  journal= {arXiv preprint arXiv:1605.03585},
  year   = {2016}
}

Comments

26 pages, 11 figures

R2 v1 2026-06-22T13:58:52.521Z