Resonance contribution of scalar color octet to production at the LHC in the minimal four color quark-lepton symmetry model
arXiv:1610.08409 · doi:10.1142/S0217732316502242
Abstract
The scalar color octet contribution to the resonance -pair production at the LHC is calculated and analysed with account of the one loop effective two gluon vertex. It is shown that this contribution from the scalar color octet predicted by the minimal model with the four color quark-lepton symmetry is for TeV of about a few percents for GeV and can exceed 10% for GeV. It is also pointed out that the search for the scalar octet as the resonance in the dijet mass spectra seems to be difficult because of the smallness of its one loop effective two gluon interaction.
12 pages, 5 figures, accepted for publication in Modern Physics Letters A
References in corpus (14)
- Parton distributions for the LHC
- Flavor Changing Neutral Currents, an Extended Scalar Sector, and the Higgs Production Rate at the LHC
- Colored Resonant Signals at the LHC: Largest Rate and Simplest Topology
- Color-octet scalars at the LHC
- Color-Octet Scalars of N=2 Supersymmetry at the LHC
- Measurements of normalized differential cross-sections for ttbar production in pp collisions at sqrt(s) = 7 TeV using the ATLAS detector
- Color Octet Scalar Production at the LHC
- NNNLO soft-gluon corrections for the top-antitop pair production cross section
- Searching for sgluons in multitop events at a center-of-mass energy of 8 TeV
- Proton Stability, Dark Matter and Light Color Octet Scalars in Adjoint SU(5) Unification
- Distinguishing Di-jet Resonances at the LHC
- Pair Production of Color-Octet Scalars at the LHC
- A new signature for color octet pseudoscalars at the LHC
- Colored scalar particles production in -collisions and possible mass limits for scalar gluons from future LHC data