English

Interference Effects in the Decays of Spin-Zero Resonances into $\gamma \gamma$ and $t\bar{t}$

High Energy Physics - Phenomenology 2016-08-24 v2 High Energy Physics - Experiment

Abstract

We consider interference effects in the production via gluon fusion in LHC collisions at 13 TeV and decays into γγ\gamma \gamma and ttˉt {\bar t} final states of one or two putative new resonant states Φ\Phi, assumed here to be scalar and/or pseudo scalar particles. Although our approach is general, we use for our numerical analysis the example of the putative 750750 GeV state for which a slight excess was observed in the initial LHC 1313 TeV data. We revisit previous calculations of the interferences between the heavy-fermion loop-induced ggΦγγgg \to \Phi \to \gamma \gamma signal and the continuum ggγγgg\to \gamma\gamma QCD background, which can alter the production rate as well as modify the line-shape and apparent mass. We find a modest enhancement by 20\sim 20% under favorable circumstances, for a large Φ\Phi width. The effect of interference on the apparent scalar-pseudoscalar mass difference in a two-Higgs-doublet model is found to be also modest. An exploratory study indicates that similar effects are to be expected in the ggΦZγgg \to \Phi \to Z \gamma channel. In this and other models with a large Φ\Phi total width, the dominant Φ\Phi decays are expected to be into ttˉt \bar t final states. We therefore also study the effects of interference of the ggΦttˉgg\to \Phi \to t\bar t signal with the ggttˉgg\to t \bar t continuum QCD background and show that in the presence of standard fermions only in the ggΦgg\to \Phi loops, it is destructive causing a dip in the ttˉt \bar t mass distribution. Including additional vector-like quarks leads to a different picture as peaks followed by dips can then occur. We use the absence of such effects in ATLAS and CMS data to constrain models of the production and decays of the Φ\Phi state(s).

Keywords

Cite

@article{arxiv.1605.00542,
  title  = {Interference Effects in the Decays of Spin-Zero Resonances into $\gamma \gamma$ and $t\bar{t}$},
  author = {Abdelhak Djouadi and John Ellis and Jérémie Quevillon},
  journal= {arXiv preprint arXiv:1605.00542},
  year   = {2016}
}

Comments

31 pages, v2 contains additional comments