arXiv:2502.04191·v1·High Energy Physics — Phenomenology
Systematic Analysis of Decays in Perturbative QCD Approach
Zhi-Tian Zou🇨🇳 · Zhao-Xu He🇨🇳 · Ya-Xin Wang🇨🇳 · Ying Li🇨🇳
Abstract
Within the perturbative QCD (PQCD) framework, we present a systematic investigation of charmless decays, where and denote scalar and pseudoscalar mesons, respectively. By employing two distinct structural scenarios for scalar mesons, we calculate the branching fractions and direct asymmetries for these processes. Our results reveal branching fractions ranging from to , values that are well within the measurable range of current experiments. A striking contrast emerges between penguin- and tree-dominated decays: while penguin-dominated processes yield larger branching fractions, tree-dominated decays exhibit significantly enhanced direct asymmetries. In particular, the decays and demonstrate marked sensitivity to the choice of scalar meson scenario, offering critical constraints for identifying the optimal model once experimental data are available. Furthermore, we calculate the branching fractions of decays in two distinct ranges of the mixing angle of . The dependencies of both branching fractions and asymmetries on this mixing angle are rigorously analyzed, establishing a framework essential for determining its value with future experimental results. These findings provide a robust theoretical foundation for advancing the understanding of nonleptonic decays in QCD-based formalisms, as well as the nature of scalar mesons.
Comments: 21 pages, 3 figures, and 4 tables