Large One-Loop Effects of BSM Triple Higgs Couplings on Double Higgs Production at $e^+e^-$ Colliders
F. Arco, S. Heinemeyer, M. M\"uhlleitner

TL;DR
This paper investigates how one-loop quantum corrections to triple Higgs couplings in the 2HDM can significantly increase double Higgs production rates at future $e^+e^-$ colliders, revealing potential for new physics insights.
Contribution
It provides the first detailed analysis of one-loop effects on triple Higgs couplings and their impact on di-Higgs production at $e^+e^-$ colliders within the 2HDM framework.
Findings
One-loop corrections can enhance $ ext{lambda}_{hhh}$ up to six times the SM value.
Enhanced couplings lead to increased di-Higgs production cross sections.
Resonant production of heavy Higgs $H$ can be more prominent due to loop corrections.
Abstract
The measurement of the Higgs boson self-coupling is crucial for our understanding of the nature of electroweak symmetry breaking and potential physics beyond the Standard Model (BSM). In this work, we study in the framework of the 2-Higgs-Doublet Model (2HDM) the impact of one-loop corrections to triple Higgs couplings (THCs) on the pair production of two Standard Model (SM)-like Higgs bosons at future high-energy colliders, focusing on the process. By including the one-loop corrections to the THCs relevant for this process, i.e. the coupling between three SM-like Higgs bosons, , and between the non-SM-like Higgs , assumed to be heavier, and two SM-like Higgs bosons, , we account for the leading one-loop corrections to the di-Higgs production cross section. We show that the one-loop corrected THC can be…
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