arXiv:2607.25935·v1·High Energy Physics — Phenomenology
Probing the limits on anomalous quartic gauge couplings via production in the channel at FCC-hh
A. Yilmaz🇹🇷 · A. Senol🇹🇷 · H. Denizli🇹🇷 · I. Turk Cakir🇹🇷 · O. Cakir
Abstract
In this study, the sensitivity to anomalous quartic gauge couplings (aQGCs) is projected via production in the 100 TeV proton-proton Future Circular Collider - hadron-hadron (FCC-hh) for an integrated luminosity of 30 ab. The final state under consideration consists of a same-flavor, opposite-sign lepton pair (electrons or muons) from one boson, the invisible decay of the other boson into neutrinos, and an accompanying photon. The FCC-hh detector response and its effects on the reconstructed objects are included through a realistic detector simulation. Three multivariate techniques are employed to separate the signal from the relevant SM backgrounds. Unitarity is preserved by a strict, operator-dependent bound on the total transverse mass () of the system. The median expected significances are calculated within the Asimov approximation for one anomalous coupling varied at a time and for background systematic uncertainties between 0\% and 10\%. The highest separation power is obtained with the deep neural network method. The resulting 95\% confidence level limits on , , and in the combined channel without systematic uncertainties are , , and TeV, respectively. We have an order of magnitude improvement when compared to current LHC limits with the assumption of 5\% systematic uncertainty.
Comments: 14 pages, 8 figures