paper

Particle-level transformers for 95 GeV Higgs boson searches at future Higgs factories

arXiv:2510.24662 · doi:10.1103/13h1-zdmz

Abstract

Motivated by several mild excesses around 95~GeV, we investigate the prospects for a light scalar produced via Higgsstrahlung, , at future Higgs factories. We take the CEPC as a benchmark, with a center-of-mass energy of GeV and an integrated luminosity of . We focus on the decay modes and . To maximize sensitivity, we employ the particle-level transformer networks Particle Transformer (ParT) and its more-interactive variant MIParT, which exploit the features of all reconstructed objects and their correlations. For a representative signal benchmark, this approach improves the expected statistical precision on the signal strength by factors of 2.3 in the channel and 1.4 in the channel compared to a cut-based analysis. Within the flipped Next-to-Two-Higgs-Doublet Model (N2HDM-F), the CEPC can measure the signal strength with a statistical precision down to 1.0% in the channel and 0.69% in the channel using MIParT. It can achieve a discovery for or , and reach 1% precision for or . These gains are expected to qualitatively carry over to other future lepton colliders such as FCC-ee and the ILC. Our results demonstrate the potential of particle-level machine-learning techniques to strengthen light Higgs searches at future Higgs factories.

29 pages, 13 figures, 4 tables, Accepted by PRD