Investigation of $Λ_{b}\to Λ_{c} \ell^-\overlineν_\ell$ Decays in Perturbative QCD Approach (2509.02257v1)
Abstract: We investigate the semileptonic decays $\Lambda_{b} \to \Lambda_{c} \ell- \bar{\nu}\ell$ (with $\ell = e, \mu, \tau$) within the framework of perturbative QCD (pQCD). The six independent $\Lambda_b \to \Lambda_c$ transition form factors are first calculated in the low-$q2$ region using the $k_T$ factorization approach. These are then extrapolated to the full physical $q2$ range via the model-independent $z$-expansion, incorporating recent lattice QCD results at high $q2$. Based on the obtained form factors, we compute the branching fractions of $\Lambda_b \to \Lambda_c \ell- \bar{\nu}\ell$ decays. Our prediction for the lepton flavor universality ratio, $\mathcal{R}{\Lambda_c} = 0.29{+0.12}{-0.11}$, is slightly larger than the latest experimental measurement. In addition, we analyze several angular observables, including forward-backward asymmetries, lepton-side convexity parameters, and polarization asymmetries. These results offer valuable theoretical input for current and future experimental investigations of semileptonic heavy-to-heavy baryon transitions.
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