English

$Z_c(3900)$ as a $D\bar{D}^*$ molecule from the pole counting rule

High Energy Physics - Phenomenology 2016-12-28 v2 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Theory

Abstract

A comprehensive study on the nature of the Zc(3900)Z_c(3900) resonant structure is carried out in this work. By constructing the pertinent effective Lagrangians and considering the important final-state-interaction effects, we first give a unified description to all the relevant experimental data available, including the J/ψπJ/\psi\pi and ππ\pi\pi invariant mass distributions from the e+eJ/ψππe^+e^-\to J/\psi\pi\pi process, the hcπh_c\pi distribution from e+ehcππe^+e^-\to h_c\pi\pi and also the DDˉD\bar D^{*} spectrum in the e+eDDˉπe^+e^-\to D\bar D^{*}\pi process. After fitting the unknown parameters to the previous data, we search the pole in the complex energy plane and find only one pole in the nearby energy region in different Riemann sheets. Therefore we conclude that Zc(3900)Z_c(3900) is of DDˉD\bar D^* molecular nature, according to the pole counting rule method~[Nucl.~Phys.~A543, 632 (1992); Phys.~Rev.~D 35,~1633 (1987)]. We emphasize that the conclusion based upon the pole counting method is not trivial, since both the DDˉD\bar D^{*} contact interactions and the explicit ZcZ_c exchanges are introduced in our analyses and they lead to the same conclusion.

Keywords

Cite

@article{arxiv.1604.08836,
  title  = {$Z_c(3900)$ as a $D\bar{D}^*$ molecule from the pole counting rule},
  author = {Qin-Rong Gong and Zhi-Hui Guo and Ce Meng and Guang-Yi Tang and Yu-Fei Wang and Han-Qing Zheng},
  journal= {arXiv preprint arXiv:1604.08836},
  year   = {2016}
}

Comments

21 pages, 9 figures. To match the published version in PRD. Additional discussion on the spectral density function is included