W-mass prediction in the complex NMSSM

In this work, we present our recent calculation of the W boson mass in the complexNext-to-Minimal Supersymmetric Standard Model (NMSSM), which includes all state-of-the-art higher-order supersymmetric corrections to ∆$_r$. In particular, we include the full one-loop corrections and the leading and sub-leading two-loop corrections $O$(α+α$_t$α$_s$+(α$_t$+α$_λ$+α$_κ$)$^2$) from the $ρ$ parameter. We show some numerical investigations of the dependence of ∆$_ρ$ on the renormalization schemes and of the dependence of M$_W$ on some selected parameters. We also discuss comparisons between some public tools which compute M$_W$ in the NMSSM. Finally we present anew version of the public Fortran code, {\\ttNMSSMCALC}, including a new M$_W$ prediction.

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Publication Details

Journal
KITopen
Published
2026-09-17
DOI
https://doi.org/10.5445/ir/1000197066
Primary Topic
Particle physics theoretical and experimental studies
Type
article
Field-Weighted Citation Impact
0.00
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article

W-mass prediction in the complex NMSSM

Martin Gabelmann, Margarete Muehlleitner, Thi Nhung Dao
KITopen
Particle physics theoretical and experimental studies
article

W-mass prediction in the complex NMSSM

Martin Gabelmann, Margarete Muehlleitner, Thi Nhung Dao
article en

Abstract

In this work, we present our recent calculation of the W boson mass in the complexNext-to-Minimal Supersymmetric Standard Model (NMSSM), which includes all state-of-the-art higher-order supersymmetric corrections to ∆$_r$. In particular, we include the full one-loop corrections and the leading and sub-leading two-loop corrections $O$(α+α$_t$α$_s$+(α$_t$+α$_λ$+α$_κ$)$^2$) from the $ρ$ parameter. We show some numerical investigations of the dependence of ∆$_ρ$ on the renormalization schemes and of the dependence of M$_W$ on some selected parameters. We also discuss comparisons between some public tools which compute M$_W$ in the NMSSM. Finally we present anew version of the public Fortran code, {\ttNMSSMCALC}, including a new M$_W$ prediction.

KITopen
Openalex Percentile: Top 12%
Particle physics theoretical and experimental studies
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