English

Study of radially excited $D_s(2^1S_0)$ and $D^+_{sJ}(2632)$

High Energy Physics - Phenomenology 2017-09-13 v1 High Energy Physics - Experiment

Abstract

The JP=0J^P=0^- radial excitation Ds(21S0)D_s(2^1S_0) is anticipated to have mass 26502650 MeV (denoted with Ds(2650)D_s(2650)) though it has not been observed. Ds(2650)D_s(2650) is anticipated to be observed in inclusive e+ee^+e^- and pppp collisions in DKD^*K channel. Ds(2650)D_s(2650) can be produced from hadronic decays of higher excited resonances. In a 3P0^3P_0 model, hadronic production of Ds(2650)D_s(2650) has been studied, relevant decay widths have been estimated. The hadronic decays of Ds(3P)D_s(3P) have been explored in detail, and the dominant decay channels have been pointed out. Two hadronic decay channels of DsJ+(2632)D^+_{sJ}(2632) were observed by SELEX, but have not been observed by any other experiment. Hadronic decays of DsJ+(2632)D^+_{sJ}(2632) in different assignments have been explored in the 3P0^3P_0 model. In view of the hadronic decay manner of DsJ+(2632)D^+_{sJ}(2632) , we conclude that DsJ+(2632)D^+_{sJ}(2632) cannot be a conventional charmed strange csˉc\bar s meson.

Keywords

Cite

@article{arxiv.1701.05678,
  title  = {Study of radially excited $D_s(2^1S_0)$ and $D^+_{sJ}(2632)$},
  author = {Yu Tian and Ze Zhao and Ailin Zhang},
  journal= {arXiv preprint arXiv:1701.05678},
  year   = {2017}
}

Comments

8 pages, 8 figures, RevTex