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Model-independent ZH production cross section at FCC-ee

High Energy Physics - Experiment 2026-05-29 v3

Abstract

This paper presents prospects for measuring the model-independent ZHZH production cross section at the FCC-ee using the recoil-mass method at center-of-mass energies of 240240 GeV and 365365 GeV. Analyses are carried out in the muon, electron, and hadronic decay modes of the associated ZZ boson. The event selections rely primarily on the kinematics of the reconstructed ZZ decay products, ensuring maximal independence from specific Higgs boson decay modes, while multivariate techniques are employed to further enhance sensitivity. Statistical interpretations of the individual final states yield relative precisions of 0.52%0.52\% for the combined leptonic channels and 0.38%0.38\% for the hadronic channel at 240240 GeV with an integrated luminosity of 10.810.8 ab1^{-1}. Their full statistical combination leads to total uncertainties of 0.31%0.31\% at 240240 GeV and 0.52%0.52\% at 365365 GeV with 3.123.12 ab1^{-1}. Dedicated statistical tests demonstrate model independence at the level of the obtained precision. This study presents the first consistent and combined analysis of the leptonic and hadronic final states for a model-independent ZHZH cross-section measurement at a future lepton collider, using a unified workflow and covering both s=240\sqrt{s}=240 and 365365 GeV. It provides the most precise expected measurement of the ZHZH production cross section at future lepton colliders, with the degree of model independence demonstrated within the achieved statistical precision.

Keywords

Cite

@article{arxiv.2512.21290,
  title  = {Model-independent ZH production cross section at FCC-ee},
  author = {Ang Li and Jan Eysermans and Gregorio Bernardi and Kevin Dewyspelaere and Michele Selvaggi and Christoph Paus},
  journal= {arXiv preprint arXiv:2512.21290},
  year   = {2026}
}

Comments

22 pages, 10 figures