Quadruple-Higgs boson production at the high-luminosity LHC
Andreas Papaefstathiou, Gilberto Tetlalmatzi-Xolocotzi
Abstract
We investigate the production of four Higgs bosons via gluon fusion at the high-luminosity LHC. We construct a phenomenological analysis of the eight-b-jet final state and use a multivariate analysis to derive expected simultaneous constraints on the triple and quartic Higgs boson self-coupling modifications. At 95% confidence level, the resulting region projects onto -10.3<c3<11.2 and -222<d4<234, where c3=κ3-1 and d4=κ4-1. We also examine how quadruple-Higgs boson production can enter a triple-Higgs boson signal region requiring at least six b-tagged jets. In addition, we consider two extensions of the Standard Model scalar sector: a one-real-singlet extension yielding the direct resonant process pp→ S→ hhhh, and a two-real-singlet extension yielding the cascade pp→ h3→ h2h2→ (hh)(hh), where S, h2 and h3 are new scalar resonances. For these processes, we derive expected upper limits on the quadruple-Higgs boson production cross sections as functions of the new scalar masses.
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