Precision from the diphoton Zh channel at FCC-hh
arXiv:2011.13941 · doi:10.1007/JHEP04(2021)154
Abstract
The future 100 TeV FCC-hh hadron collider will give access to rare but clean final states which are out of reach of the HL-LHC. One such process is the production channel in the final states. We study the sensitivity of this channel to the , , , and SMEFT operators, which parametrize deviations of the and couplings to quarks, or, equivalently, anomalous trilinear gauge couplings (aTGC). While our analysis shows that good sensitivity is only achievable for , we demonstrate that binning in the rapidity has the potential to improve the reach on . Our estimated bounds are one order of magnitude better than projections at HL-LHC and is better than global fits at future lepton colliders. The sensitivity to is competitive with other channels that could probe the same operator at FCC-hh. Therefore, combining the different diboson channels sizeably improves the bound on , reaching a precision of on the deviations in the interactions.
32 pages, 6 figures, 9 tables. v2: a few small clarifications added, results and discussion unchanged, matches version published in JHEP
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Cited by in corpus (8)
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- Diboson production in the SMEFT from gluon fusion
- Revisiting at the LHC and FCC-hh
- Electroweak Restoration at the LHC and Beyond: The Channel
- Leveraging on-shell interference to search for FCNCs of the top quark and the Z boson
- Higgs couplings in SMEFT via Zh production at the HL-LHC
- Quasi-Keplerian parametrization for compact binaries on hyperbolic orbits in scalar-tensor theories at second post-Newtonian order
- Leveraging intermediate resonances to probe CP violation at colliders