HEFT's appraisal of triple (versus double) Higgs weak boson fusion
Anisha, Daniel Domenech, Christoph Englert, Maria J. Herrero, Roberto, A. Morales

TL;DR
This paper investigates the potential for observing triple Higgs boson production via weak boson fusion at colliders, analyzing enhancements in Higgs Effective Field Theory and assessing experimental sensitivities.
Contribution
It identifies scenarios with large modifications in triple Higgs production and evaluates their detectability at current and future colliders within HEFT.
Findings
Potential observable effects in WBF triple Higgs production.
Analysis of unitarity constraints on EFT modifications.
Predictions for collider sensitivities at LHC, FCC, CLIC, and muon colliders.
Abstract
Multi-Higgs boson interactions with massive gauge bosons are known to be tell-tale probes of the vacuum manifold of electroweak symmetry breaking. Phenomenologically, a precise determination of these parameters is hampered through increasingly rare processes at the presently available energy frontier provided by the Large Hadron Collider. Contact interactions of three Higgs bosons with the and bosons seem currently well out of experimental reach due to an irrelevant SM production cross section. From a theoretical perspective, in perturbative extensions of the SM such interactions are suppressed by weak loops and further diluted in a priori sensitive processes like weak boson fusion (WBF) when they admit a dimension-six Standard Model Effective Field Theory description. In this work, we identify scenarios that can indeed lead to large, and perhaps even observable modifications of…
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Dark Matter and Cosmic Phenomena · Quantum Chromodynamics and Particle Interactions
