Quasi-two-body decays $B\to K\rho\to K\pi\pi$ in perturbative QCD approach
Wen-Fei Wang, Hsiang-nan Li

TL;DR
This paper uses the perturbative QCD approach to analyze quasi-two-body B meson decays into K and pion pairs via rho resonances, calculating branching ratios and CP asymmetries, and confirming the PQCD factorization framework.
Contribution
It introduces a method to analyze B decays into K and pion pairs via rho resonances using two-pion distribution amplitudes within PQCD, matching experimental data.
Findings
Theoretical results agree with experimental data.
Gegenbauer moments of P-wave two-pion distribution amplitudes are determined.
Supports PQCD factorization for three-body B decays.
Abstract
We analyze the quasi-two-body decays in the perturbative QCD (PQCD) approach, in which final-state interactions between the pions in the resonant regions associated with the -wave states and are factorized into two-pion distribution amplitudes. Adopting experimental inputs for the time-like pion form factors involved in two-pion distribution amplitudes, we calculate branching ratios and direct asymmetries of the modes. It is shown that agreement of theoretical results with data can be achieved, through which Gegenbauer moments of the -wave two-pion distribution amplitudes are determined. The consistency between the three-body and two-body analyses of the decays supports the PQCD factorization framework for exclusive hadronic meson decays.
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