# Two-body decays of gluino at full one-loop level in the quark-flavour   violating MSSM

**Authors:** Helmut Eberl, Elena Ginina, Keisho Hidaka

arXiv: 1702.00348 · 2017-04-26

## TL;DR

This paper calculates the full one-loop level two-body decay widths of gluinos in the quark-flavour violating MSSM, highlighting the impact of QFV parameters and electroweak corrections on decay processes.

## Contribution

It provides the first comprehensive analysis of gluino decays at full one-loop level in the QFV MSSM, including electroweak effects and detailed dependence on QFV parameters.

## Key findings

- One-loop corrections are mostly negative, around -10%.
- QFV parameters significantly influence decay widths, especially through squark mixing.
- Electroweak corrections can reach up to 35% of SUSY QCD corrections.

## Abstract

We study the two-body decays of the gluino at full one-loop level in the Minimal Supersymmetric Standard Model with quark-flavour violation (QFV) in the squark sector. The renormalization is done in the $\overline{\rm DR}$ scheme. The gluon and photon radiations are included by adding the corresponding three-body decay widths. We discuss the dependence of the gluino decay widths on the QFV parameters. The main dependence stems from the $\tilde c_R - \tilde t_R$ mixing in the decays to up-type squarks, and from the $\tilde s_R - \tilde b_R$ mixing in the decays to down-type squarks due to the strong constraints from B-physics on the other quark-flavour mixing parameters. The full one-loop corrections to the gluino decay widths are mostly negative and of the order of about -10\%. The QFV part stays small in the total width but can vary up to -8\% for the decay width into the lightest squark. For the corresponding branching ratio the effect is somehow washed out by at least a factor of two. The electroweak corrections can be as large as 35\% of the SUSY QCD corrections.

## Full text

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## Figures

36 figures with captions in the complete paper: https://tomesphere.com/paper/1702.00348/full.md

## References

39 references — full list in the complete paper: https://tomesphere.com/paper/1702.00348/full.md

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Source: https://tomesphere.com/paper/1702.00348