Very recently, the BESIII collaboration reported a charged hidden-charm structure with strangeness in the recoil mass of K+ of a process e+e−→Ds∗−D0K+ or Ds−D∗0K+, which is named as Zcs(3985)−. The newly observed charged structure can be treated as a partner structure with strangeness of well-known Zc(3885)− reported in a process e+e−→D∗−D0π+. In this work, we propose a novel picture to understand the nature of Zcs(3985). By performing a combined analysis for the line shape of the recoil mass distribution of K+ at five energy points s=4.628,4.641,4.661,4.681,4.698 GeV, we find that the Zcs(3985) can be explained as a reflection structure of charmed-strange meson Ds2∗(2573), which is produced from the open-charm decay of Y(4660) with a Ds∗ meson. Furthermore, we predicted the angular distribution of final state Ds∗− in process e+e−→Ds∗−D0K+ based on our proposed reaction mechanism, which may be an essential criterion to test the non-resonant nature of Zcs(3985) further.
@article{arxiv.2011.08628,
title = {Toward charged $Z_{cs}(3985)$ structure under a reflection mechanism},
author = {Jun-Zhang Wang and Qin-Song Zhou and Xiang Liu and Takayuki Matsuki},
journal= {arXiv preprint arXiv:2011.08628},
year = {2021}
}