# $R_K$ and $R_{K^{\ast}}$ beyond the Standard Model

**Authors:** Gudrun Hiller, Ivan Nisandzic

arXiv: 1704.05444 · 2018-02-12

## TL;DR

Recent measurements of $R_K$ and $R_{K^*}$ suggest lepton universality violation, indicating potential new physics beyond the Standard Model, with leptoquarks as a plausible explanation testable at the LHC.

## Contribution

This paper analyzes the implications of $R_K$ and $R_{K^*}$ anomalies, proposing leptoquark models as explanations and predicting testable signatures at the LHC.

## Key findings

- Leptoquark models can explain $R_K$ and $R_{K^*}$ anomalies at tree level.
- The anomalies favor SM-like chiral new physics contributions.
- Predicted leptoquark masses are within reach of current collider experiments.

## Abstract

Measurements of the ratio of $B \to K^* \mu \mu $ to $B \to K^* e e $ branching fractions, $R_{K^*}$, by the LHCb collaboration strengthen the hints from previous studies with pseudoscalar kaons, $R_K$, for the breakdown of lepton universality, and therefore the Standard Model (SM), to $\sim 3.5 \sigma$. Complementarity between $R_K$ and $R_{K^*}$ allows to pin down the Dirac structure of the new contributions to be predominantly SM-like chiral, with possible admixture of chirality-flipped contributions of up to ${\cal{O}}( \mbox{few} 10 \%)$. Scalar and vector leptoquark representations $(S_3,V_1,V_3)$ plus possible ($\tilde S_2,V_2$) admixture can explain $R_{K,K^*}$ via tree level exchange. Flavor models naturally predict leptoquark masses not exceeding a few TeV, with couplings to third generation quarks at $O(0.1)$, implying that this scenario can be directly tested at the LHC.

## Full text

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## Figures

3 figures with captions in the complete paper: https://tomesphere.com/paper/1704.05444/full.md

## References

46 references — full list in the complete paper: https://tomesphere.com/paper/1704.05444/full.md

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Source: https://tomesphere.com/paper/1704.05444