Prospect and implications of cg bH+ b A W+ production at the LHC

Abstract

We study the prospect for discovering the cg bH+ b A W+ process at the LHC. Induced by the top-flavor changing neutral Higgs coupling tc, the process may emerge if mH+ > mA + mW+, where H+ and A are charged and CP-odd Higgs bosons in the general two Higgs Doublet Model (g2HDM). We show that the cg bH+ b A W+ process can be discovered at LHC Run 3, while the full Run 2 data at hand can constrain the parameter space significantly by searching for the same-sign dilepton final state. The process has unique implications on the hint of gg A t t excess at mA≈ 400 GeV reported by CMS. When combined with other existing constraints, the cg bH+ b A W+ process can essentially rule out the g2HDM explanation of such an excess.

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