# On the ratio of $t\bar{t}\gamma$ and $t\bar{t}$ cross sections at the   LHC

**Authors:** Giuseppe Bevilacqua

arXiv: 1906.10534 · 2019-07-02

## TL;DR

This paper analyzes the ratio of $t\bar{t}\gamma$ to $t\bar{t}$ production cross sections at the LHC, aiming for precise Standard Model predictions to detect potential new physics effects.

## Contribution

It provides a detailed NLO QCD analysis of the cross section ratio, including realistic simulations and uncertainty quantification, enhancing the precision of theoretical predictions.

## Key findings

- Quantified theoretical uncertainties from scale and PDF variations.
- Provided predictions for inclusive and differential cross sections.
- Highlighted the potential of the ratio to reveal new physics effects.

## Abstract

We study the ratio of the cross sections for $t\bar{t}\gamma$ and $t\bar{t}$ production at the LHC. The presence of correlations between theoretical uncertainties of the two processes makes possible a precise determination of this observable. This can help to evidentiate effects of new physics that might reveal themselves only when sufficiently precise theoretical predictions are available. Our analysis is based on fully realistic simulations of $t\bar{t}\gamma$ and $t\bar{t}$ production in the dilepton decay channel, including complete off-shell and non-resonant effects at NLO QCD accuracy. We discuss Standard Model predictions for the LHC Run II at both inclusive and differential level, also quantifying the impact of the theoretical uncertainties related to variation of scales and parton distribution functions.

## Full text

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## Figures

3 figures with captions in the complete paper: https://tomesphere.com/paper/1906.10534/full.md

## References

33 references — full list in the complete paper: https://tomesphere.com/paper/1906.10534/full.md

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Source: https://tomesphere.com/paper/1906.10534