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arXiv:2212.11242·v1·High Energy Physics — Phenomenology

Sensitivity to Triple Higgs Couplings via Di-Higgs Production in the 2HDM at the (HL-)LHC

F. Arco🇪🇸 · S. Heinemeyer🇪🇸 · M. Mühlleitner🇩🇪 · K. Radchenko🇩🇪

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Abstract

An important task of the LHC is the investigation of the Higgs-boson sector. Of particular interest is the reconstruction of the Higgs potential, i.e. the measurement of the Higgs self-couplings. Based on previous analyses, within the 2HDMs type~I and~II, we analyze several two-dimensional benchmark planes that are over large parts in agreement with all theoretical and experimental constraints. For these planes we evaluate di-Higgs production cross sections at the (HL-)LHC with a center-of-mass energy of 13 TeV at NLO in the heavy top-quark limit with the code HPAIR. We investige in particular the process , with being the Higgs boson discovered at the LHC with a mass of about 125 GeV. The top box diagram of the loop-mediated gluon fusion process into Higgs pairs interferes with the -channel exchange of the two CP-even 2HDM Higgs bosons and involving the trilinear couplings and , respectively. Depending on the size of the involved top-Yukawa and triple Higgs couplings as well as on the mass of , the contribution of the -channel ~diagram can be dominating or be highly suppressed. We find regions of the allowed parameter space in which the di-Higgs production cross section can differ by many standard deviations from its SM prediction, indicating possible access to deviations in from the SM value and/or contributions involving . The sensitivity to is further analyzed employing the distributions. We demonstrate how a possible measurement of depends on the various experimenal uncertainties. Depending on the underlying parameter space, the HL-LHC may have the option not only to detect beyond-the-Standard-Model triple Higgs couplings, but also to provide a first rough measurement of their sizes.

Comments: 43 pages, 26 figures

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