In this work, the S- and P-wave Dˉ∗K∗ interactions are studied in a coupled-channel formalism to understand the recently observed X0(2900) and X1(2900) at LHCb. The experimental event distributions can be well described, and two states with I(JP)=0(0+) and 0(1−) are yielded in an unified framework. The masses of the 0+ and 1− states are consistent with the experimental data, but the width of the 0+ state is larger than that of the 1− one. The X1(2900) can be interpreted as the P-wave excitation of the ground-state X0(2900) in the hadronic molecular picture. The S- and P-wave multiplets in the Dˉ∗K∗ system have many members, so the present peak in the D−K+ invariant mass distributions might contain multi subpeaks. In order to probe the fine structures behind the single whole peak now, more refined measurements in the B+→D+D−K+ decay channel are necessary.
@article{arxiv.2107.09275,
title = {How to understand the $X(2900)$?},
author = {Bo Wang and Shi-Lin Zhu},
journal= {arXiv preprint arXiv:2107.09275},
year = {2022}
}