Branching ratios, $CP$ asymmetries and polarizations of $B\rightarrow \psi(2S) V$ decays
Zhou Rui, Ya Li, and Zhen-Jun Xiao

TL;DR
This paper systematically analyzes $B o \psi(2S) V$ decays using PQCD, predicting branching ratios, CP asymmetries, and polarization observables, with results consistent with current measurements and implications for new physics searches.
Contribution
First comprehensive PQCD analysis of $B o \\psi(2S) V$ decays including NLO corrections, providing predictions for observables and insights into polarization and CP violation.
Findings
Branching ratios for certain decays align with experimental data.
Direct CP asymmetries are predicted to be very small.
Polarization fractions show suppression of longitudinal component to about 50%.
Abstract
We analyzed the nonleptonic decays with by employing the perturbative QCD (PQCD) factorization approach. Here the branching ratios, the asymmetries and the complete set of polarization observables are investigated systematically. Besides the traditional contributions from the factorizable and nonfactorizable diagrams at the leading order, the next-to-leading order (NLO) vertex corrections could also provide considerable contributions. The PQCD predictions for the branching ratios of the decays are consistent with the measured values within errors. As for decays, the branching ratios can reach the order of and could be measured in the LHCb and Belle-II experiments. The numerical results show that the direct asymmetries of the…
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