Contributions of (770,1450) ωπ for the Cabibbo-favored D hωπ decays

Abstract

Recently, the BESIII Collaboration has observed the three-body decays Ds+ η ωπ+, D+ K0Sπ+ω and D0 K-π+ω. In this work, we investigate the contributions of the subprocesses + ωπ+ in these Cabibbo-favored decays D hωπ, with += \(770)+, (1450)+, (770)+\&(1450)+\ and h=\ η, K0S, K-\, by introducing these subprocesses into the decay amplitudes of relevant decay processes via the vector form factor Fωπ which has measured in the related τ and e+e- processes; we provide the first theoretical predictions for the branching fractions of the quasi-two-body decays Ds+η[+]ωπ+, D+ K0S[+]ωπ+ and D0 K-[+]ωπ+. Our findings reveal that the contributions from the subprocess (770)+ωπ+ are significant in these observed three-body decays Ds+η ωπ+, D+ K0S ωπ+ and D0 K- ωπ+, notwithstanding the contributions originating from the Breit-Wigner tail effect of (770)+. The numerical results of this study suggest that the dominant resonance contributions for the three-body decays Ds+η ωπ+ and D+ K0S ωπ+ are originated from the P-wave intermediate states (770)+, (1450)+ and their interference effects.

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