We propose a phenomenological three component model describing the decay amplitude of the process Ds+\ra3π. The first component is a constant background, the second one is a Breit-Wigner amplitude associated to a quasi two-body f0(980)π+ state and the third one another Breit-Wigner amplitude corresponding to a possible quasi two-body ρ(770)π state. We show that it is possible to reproduce the observed total rate for Ds+\raπ+π+π− as well as the two other measured branching ratios for the non resonant part and the resonant f0π+ one. Implication of the ρπ+ state, of which an experimental limit has been given, is discussed. An upper bound in the 10 MeV range for the decay constant fπ′ of the π(1300) meson is obtained . Predictions are given for the Ds+\raπ0π0π+ rate as well as for the π+ and π− (π0 and π+) energy distributions for these two decay modes Ds+\raπ+π+π− (Ds+\raπ0π0π+) respectively.
@article{arxiv.hep-ph/9506225,
title = {A MODEL FOR THE CHARMED $D_s^{+}$ MESON DECAYS INTO THREE PIONS},
author = {M. GOURDIN and Y. Y. KEUM and X. Y. PHAM},
journal= {arXiv preprint arXiv:hep-ph/9506225},
year = {2016}
}