On a possibility of a consistent interpretation of diboson excesses at LHC
arXiv:1602.08293 · doi:10.1142/S0217732316501443
Abstract
Recently reported diboson and diphoton excesses at LHC are interpreted to be connected with heavy zero spin resonances. The resonances appears due to the wouldbe anomalous triple interaction of the weak bosons, which is defined by well-known coupling constant . The anomaly tentatively corresponds to weak isotopic spin 2 scalar state and the anomaly corresponds to weak isotopic spin 0 pseudoscalar state. We obtain estimates for the effect, which qualitatively agree with ATLAS data. Effects are predicted in a production of via resonance with , which could be reliably checked at the upgraded LHC at . In the framework of an approach to the spontaneous generation of the triple anomalous interaction its coupling constant is estimated to be in an agreement with existing restrictions. Specific predictions of the hypothesis are significant effects in decay channels .
8 pages, 2 figures; title changed, additional estimates introduced, few new references added
References in corpus (6)
- Measurement of W+W- and ZZ production cross sections in pp collisions at sqrt(s) = 8 TeV
- Search for diphoton resonances in the mass range from 150 to 850 GeV in pp collisions at sqrt(s) = 8 TeV
- Search for high-mass diphoton resonances in collisions at TeV with the ATLAS detector
- Search for production of resonances decaying to a lepton, neutrino and jets in collisions at = 8 TeV with the ATLAS detector
- Augmenting the diboson excess for Run 2
- Bogoliubov compensation principle in the electro-weak interaction: value of the gauge constant, muon g-2 anomaly, predictions for Tevatron and LHC