Abstract

For the search for scalar leptons in the minimal supersymmetric standard model (MSSM) as well as for future precision analyses of these particles an accurate knowledge of their production and decay properties is mandatory. We evaluate the cross sections for the slepton production at e^+e^- colliders in the MSSM with complex parameters (cMSSM). The evaluation is based on a full one-loop calculation of the production mechanisms e^+e^- rightarrow tilde{l}_{gs} tilde{l}_{gs^{prime }} including soft and hard photon radiation. The dependence of the slepton production cross sections on the relevant cMSSM parameters is analyzed numerically. We find sizable contributions to many production cross sections. They amount to roughly 15% of the tree-level results but can go up to 40% or higher in extreme cases. Also the dependence on complex parameters of the one-loop corrections for the production of charged sleptons was found non-negligible. The full one-loop contributions are thus crucial for physics analyses at a future linear e^+e^- collider such as the ILC or CLIC.

Highlights

  • Supersymmetry (SUSY) predicts two scalar partners for all standard model (SM) fermions as well as fermionic partners to all SM bosons

  • We evaluate the cross sections for the slepton production at e+e− colliders in the minimal supersymmetric standard model (MSSM) with complex parameters

  • In this paper we present for the first time a full and consistent one-loop calculation in the cMSSM for scalar lepton production at e+e− colliders

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Summary

Introduction

Supersymmetry (SUSY) predicts two scalar partners for all SM fermions as well as fermionic partners to all SM bosons. Full one-loop calculations in the cMSSM to (heavy) scalar tau decays was evaluated in Ref. Full one-loop evaluations in the cMSSM exist for the corresponding decays of Higgs bosons [28] as well as from charginos and neutralinos [29,30,31,32]. Third generation sfermion production at the full one-loop level in the rMSSM, including staus and tau sneutrinos were presented in Refs. In this paper we present for the first time a full and consistent one-loop calculation in the cMSSM for scalar lepton production at e+e− colliders. The predictions for the production and decay can be used together in a consistent manner (e.g., in a global phenomenological analysis of the slepton sector at the one-loop level).

Calculation of diagrams
The complex MSSM
Contributing diagrams
SF e Fl1s e Vlgs
Comparisons
Numerical analysis
Parameter settings
Findings
Conclusions
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