Motivated by the recent LHCb collaboration measurements of charmless three-body decays of Bs-0 meson, we calculate the branching fractions of Bs→K0h+h'-(h(')=K,π)decay modes using the factorization approach.B...Motivated by the recent LHCb collaboration measurements of charmless three-body decays of Bs-0 meson, we calculate the branching fractions of Bs→K0h+h'-(h(')=K,π)decay modes using the factorization approach.Both the resonant and nonresonant contributions are studied in detail. For the decays Bs→K0h+h'-(h(')=K,π) and Bs→K0h+h'-(h(')=K,π)our resultsagree well with experimental data, and the former is dominated by the K*, while the latter one is dominated by the nonresonant con-tribution. Considering the flavor S U(3) symmetry violation, the sum of branching fractions of Bs→K0h+h'-(h(')=K,π)could accommodate the data well too. It should be noted that both branching fractions are sensitive to the scalar density (Kπ|sq|0)). Furthermore, the resonant contributions are dominated by the scalar K;(1430). We hope that these branching fractions could be measured individually in the experiments so as to test the factorization approach and the flavor S U(3) asymmetry. Moreover, the direct CP asymmetries of these decays are also investigated, which could be measured in the running LHCb experiment and Super-b factory in the future.展开更多
基金supported by the National Natural Science Foundation of China(Grants Nos.11175151 and 11235005)the Program for New Century Excellent Talents in University(NCET)by Ministry of Education of China(Grant No.NCET-13-0991)
文摘Motivated by the recent LHCb collaboration measurements of charmless three-body decays of Bs-0 meson, we calculate the branching fractions of Bs→K0h+h'-(h(')=K,π)decay modes using the factorization approach.Both the resonant and nonresonant contributions are studied in detail. For the decays Bs→K0h+h'-(h(')=K,π) and Bs→K0h+h'-(h(')=K,π)our resultsagree well with experimental data, and the former is dominated by the K*, while the latter one is dominated by the nonresonant con-tribution. Considering the flavor S U(3) symmetry violation, the sum of branching fractions of Bs→K0h+h'-(h(')=K,π)could accommodate the data well too. It should be noted that both branching fractions are sensitive to the scalar density (Kπ|sq|0)). Furthermore, the resonant contributions are dominated by the scalar K;(1430). We hope that these branching fractions could be measured individually in the experiments so as to test the factorization approach and the flavor S U(3) asymmetry. Moreover, the direct CP asymmetries of these decays are also investigated, which could be measured in the running LHCb experiment and Super-b factory in the future.