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arXiv:2608.05096·v1·High Energy Physics — Phenomenology

High energy probes of Higgs self-coupling via boson fusion at future lepton colliders

Amir Subba · Hrishikesh Deka · Subhaditya Bhattacharya · Abhik Sarkar

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Abstract

We investigate the sensitivity to the Higgs self-coupling through boson fusion di-Higgs production at CLIC with a center-of-mass energy of TeV. We study the interplay between the Higgs self-coupling modifier () and Higgs-gauge coupling modifiers ( and ) within the framework. To enhance the separation between signal and background, we develop a graph neural network (GNN) based classifier that achieves a signal significance of at , substantially exceeding projected HL-LHC sensitivity. Our results demonstrate that high-energy lepton colliders, combined with graph-based machine learning, provide excellent sensitivity to the Higgs self-coupling and offer a powerful probe of new physics in the electroweak sector, disentangling linearly and non-linearly realized electroweak symmetry breaking.

Comments: Letter: 5 pages and 3 figures. Supplemental: 7 pages, 7 figures and 3 tables