A composite scalar hint from di-boson resonances?
arXiv:1512.04508
Abstract
We study the light scalar resonance sector of a composite Higgs model UV embedding based on the coset . Beyond the Higgs multiplet, the pseudo Nambu-Goldstone sector of this model contains Standard Model singlets which couple to the Standard Model gauge bosons through Wess-Zumino-Witten anomaly terms. They can thus be produced in gluon fusion and decay into either gluons or pairs of electroweak gauge bosons , , , or . In this letter we show that one of the pseudo Nambu-Goldstone boson states has appropriate couplings in order to explain a di-boson excess in the channel whilst not being excluded by LHC run I bounds on the di-jet, and decay channels. A di-boson resonance production cross section of 10 fb at LHC run I is not a prediction of the model, but can be obtained if the confining gauge group is of high rank.
5 pages, 3 figures, 2 tables
References in corpus (4)
- Search for high-mass dilepton resonances in pp collisions at sqrt(s) = 8 TeV with the ATLAS detector
- Search for resonances and quantum black holes using dijet mass spectra in proton-proton collisions at sqrt(s) = 8 TeV
- Search for massive resonances in dijet systems containing jets tagged as W or Z boson decays in pp collisions at sqrt(s) = 8 TeV
- Search for massive resonances decaying into pairs of boosted bosons in semi-leptonic final states at sqrt(s) = 8 TeV
Cited by in corpus (11)
- Composite Models for the 750 GeV Diphoton Excess
- Footprints of New Strong Dynamics via Anomaly and the 750 GeV Diphoton
- 750 GeV Diphotons from a D3-brane
- Light scalars in composite Higgs models
- Third-family quark-lepton unification with a fundamental composite Higgs
- Singlets in Composite Higgs Models in light of the LHC di-photon searches
- Modelling vector-like quarks in partial compositeness framework
- Hidden Pion Varieties in Composite Models for Diphoton Resonances
- Diphotons from an Electroweak Triplet-Singlet
- Improving Fine-tuning in Composite Higgs Models
- Probing a new strongly interacting sector via composite diboson resonances