Precision Measurements of Higgs Hadronic Decay Modes at the FCC-ee

Abstract

The expected precision at the FCC-ee on the product σ×B(H→ bb, cc,ss,gg) of Higgs boson production cross sections times branching ratios of hadronic decays is presented. This study provides the first comprehensive determination of all major hadronic Higgs decay modes in a combined fit at future e+ e- colliders, using both Higgs-strahlung (ZH) and Vector boson fusion ( H) production processes, with a full treatment of interference effects in the jj final state. It assumes four identical IDEA detectors collecting e+e- collisions at s=240 and 365\,GeV. The combination of all channels across both energies, with full covariance between production and decay modes, yields a production cross-section times branching-ratio precision at the percent to per-mil level for the dominant hadronic final states (bb, cc,gg). These results provide a comprehensive input to the determination of Higgs coupling projections at the FCC-ee, and they establish for the first time sensitivity to the rare decay H→ ss, demonstrating that FCC-ee has the potential to provide evidence of the strange-quark Yukawa coupling.

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