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arXiv:2411.01507·v1·High Energy Physics — Experiment

Higgs Self-coupling Strategy at Linear ee Colliders

Bryan Bliewert🇩🇪 · Jenny List🇩🇪 · Dimitris Ntounis🇺🇸 · Junping Tian · Julie Munch Torndal🇩🇪 · Caterina Vernieri🇺🇸

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Abstract

The determination of the Higgs self-coupling is a key target for future colliders, in particular through di-Higgs production at Linear Colliders with \,GeV, e.g.\ ILC, C3 or CLIC. This contribution will discuss the roles and the interplay of di-Higgs production processes at various collider energies, including the case of non-SM values of the self-coupling. Previous studies, already based on Geant4-based detector simulation, established that the Higgs self-coupling can be extracted with precision and provided a solid understanding of the limiting factors. This provides a robust starting point to explore the potential of more modern and sophisticated reconstruction and analysis techniques. We summarize the impact of advanced, often machine-learning-based algorithms, including e.g.\ jet clustering, kinematic fitting and matrix element-inferred likelihoods on the reconstruction of events and before discussing the dependence of the projected precision on the center-of-mass energy and on the actual value of the self-coupling.

Comments: 6 pages, contribution to proceedings of ICHEP 2024

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