Comprehensive analyses of rare $ \Lambda_b \rightarrow \Lambda \ell^+ \ell^-$, $\Sigma_b \rightarrow \Sigma \ell^+ \ell^-$ and $\Xi_b \rightarrow \Xi \ell^+ \ell^-$ decays in 2HDM
Z. Tavuko\u{g}lu, A. T. Olgun, K. Azizi

TL;DR
This paper analyzes rare baryonic decays involving $ ext{Lambda}_b$, $ ext{Sigma}_b$, and $ ext{Xi}_b$ in the Standard Model and Two-Higgs-Doublet Model Type III, comparing theoretical predictions with experimental prospects.
Contribution
It provides a comprehensive theoretical study of rare baryonic decays in 2HDM Type III, including calculations of observables and comparison with existing data.
Findings
2HDM Type III significantly affects decay observables.
Predicted branching ratios are within experimental detection range.
Results show potential to distinguish between SM and 2HDM in future experiments.
Abstract
We investigate rare special dileptonic decays of , and baryons in the Standard Model and context of the general Two-Higgs-Doublet Model with Type III. Specifically, we consider the decays , and , where represents or lepton. By studying these rare decays, we aim to assess the impact of the Two-Higgs-Doublet Model with Type III on various observables, such as the differential branching ratio, total branching ratio, and lepton forward-backward asymmetries using the decay amplitude and the transition matrix elements in terms of form factors calculated via light cone QCD in full theory. We compare our results to those of the Standard Model, as well as existing lattice QCD predictions and experimental data, to assess…
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