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arXiv:2508.01449·v2·High Energy Physics — Phenomenology

Boosting Sensitivity to with Graph Neural Networks and XGBoost

Mohamed Belfkir🇦🇪 · Mohamed Amin Loualidi🇦🇪 · Salah Nasri🇦🇪

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Abstract

In this paper, we explore the use of advanced machine learning (ML) techniques to enhance the sensitivity of double Higgs boson searches in the \( HH \to b\bar{b}\gamma\gamma \) decay channel at 13.6 TeV. Two ML models are implemented and compared: a tree-based classifier using XGBoost, and a geometrical-based graph neural network classifier (GNN). We show that the geometrical model outperform the traditional XGBoost classifier improving the expected 95\% CL upper limit on the double Higgs boson production cross-section by 28\%. Our results are compared to the latest ATLAS experiment results, showing significant improvement of both upper limit and Higgs boson self-coupling () constraints.

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