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Loop effects and non-decoupling property of SUSY QCD in $g b\to tH^{-}$

arXiv:hep-ph/0202016 · doi:10.1103/PhysRevD.66.015007

Abstract

One-loop SUSY QCD radiative correction to $gb \to tH^{-}$ cross section is calculated in the Minimal Supersymmetric Standard Model. We found that SUSY QCD is non-decoupling if the gluino mass and the parameter $μ$, $A_t$ or $A_b$ are at the same order and get large. The non-decoupling contribution can be enhanced by large $\tanβ$ and therefore large corrections to the hadronic production rates at the Tevatron and LHC are expected in the large $\tanβ$ limit. The fundamental reason for such non-decoupling behavior is found to be some couplings in the loops being proportional to SUSY mass parameters.

15 pages, 5 PS figures. A proof of non-decouplings of SUSY-QCD, Comments on corresponding QCD correction and references added