Possible enhancement of the $e^+ e^- \to H^\pm W^\mp$ cross section in the two-Higgs-doublet model
Shinya Kanemura (ITP, Uni. Karlsruhe)

TL;DR
This paper investigates how the cross section for producing a charged Higgs boson with a W boson at electron-positron colliders can be significantly increased through loop effects in the two-Higgs-doublet model and MSSM, with implications for collider experiments.
Contribution
It provides a detailed analysis of loop-induced enhancements of the $e^+ e^- o H^\pm W^\mp$ process in 2HDM and MSSM, highlighting conditions for maximal cross section increase.
Findings
Large top-bottom loop effects for small $ an eta$ in 2HDM.
Higgs-loop contributions are moderate for moderate $ an eta$ in 2HDM.
In MSSM, only top-bottom loops significantly enhance the cross section.
Abstract
The production process of the charged Higgs-boson associated with a boson at electron-positron colliders is discussed in the two-Higgs-Doublet Model (2HDM) and in the Minimal Supersymmetric Standard Model (MSSM). The process is induced at one-loop level in these models. We examine how much the cross section can be enhanced by quark- and Higgs-loop effects. In the non-SUSY 2HDM, in addition to large top-bottom (-) loop effects for small (), the Higgs-loop diagrams can contribute to the cross section to some extent for moderate values. For larger (), such enhancement by the Higgs non-decoupling effects is bounded by the requirement for validity of perturbation theory. In the MSSM with heavy super-partner particles, only the - loops enhance the cross section while Higgs-loop effects are very…
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