arXiv:2608.01888·v3·High Energy Physics — Phenomenology
Measuring the trilinear Higgs self-coupling in Higgs boson pair production at multi-TeV muon colliders
Kingman Cheung🇹🇼 · Jae Sik Lee🇰🇷 · Soojin Lee🇹🇼 · Chen Wang🇹🇼
Abstract
The trilinear Higgs self-coupling determines the shape of the Higgs potential, and its measurement is a central goal of future colliders. We assess the sensitivity of multi-TeV muon colliders to the coupling modifier in Higgs boson pair production via vector boson fusion, using the final state at TeV with ab and at TeV with ab. Events are analyzed in two complementary regions, a resolved region with four jets and a boosted region with two large-radius jets. To extract the signal from backgrounds a few orders of magnitude larger, we combine a supervised jet-to-Higgs pairing network based on the SPANet approach, topological data analysis of the event energy flow, and two dedicated classifiers, for the signal-to-background separation and for the shape information. The coupling is extracted from a two-dimensional likelihood fit to the distribution of the two classifier outputs. Combining the two regions, we obtain at TeV and at TeV at confidence level. The TeV determination reaches the few-percent level in this statistics-limited projection, which surpasses by a large amount the precision projected for the HL-LHC.
Comments: 37 pages, 16 figures, 5 tables. v2: references added. v3: acknowledgment added