English

Pole trajectories from $S$- and $P$-wave $D\bar{D}^*$ interactions

High Energy Physics - Phenomenology 2025-07-14 v2

Abstract

In this work, we investigate the SS- and PP-wave interactions of the DDˉD\bar{D}^* system within the framework of the quasipotential Bethe-Salpeter equation, with the aim of exploring possible molecular states and their corresponding pole trajectories. The interaction potentials are constructed using the one-boson-exchange model, incorporating the exchanges of π\pi, η\eta, ρ\rho, ω\omega, σ\sigma, and J/ψJ/\psi mesons, based on heavy quark effective Lagrangians. The poles of the scattering amplitude are analyzed and their evolution on two Riemann sheets is systematically traced as the cutoff parameter increases up to 5 GeV. We identify four molecular states arising from the SS-wave DDˉD\bar{D}^* interaction. Among them, the bound state with quantum numbers IG(JPC)=0+(1++)I^G(J^{PC}) = 0^+(1^{++}) corresponds well to the experimentally observed X(3872)X(3872), while its isovector partner with IG(JPC)=1(1++)I^G(J^{PC})= 1^-(1^{++}) is found to exist only as a virtual state. Additionally, a 0(1+)0^-(1^{+-}) state appears as a bound state. The isovector 1+1^{+-} state, which may be associated with the Zc(3900)Z_c(3900), is observed to evolve from a bound state to a virtual state as the interaction strength decreases. For the PP-wave DDˉD\bar{D}^* interaction, the structure G(3900)G(3900) recently observed at BESIII is likely connected to a 0(1)0^-(1^{--}) state. A 0+(0+)0^+(0^{-+}) state is also predicted in this channel. Both can appear as either resonance or bound/virtual state depending on the interaction strength.

Keywords

Cite

@article{arxiv.2504.15534,
  title  = {Pole trajectories from $S$- and $P$-wave $D\bar{D}^*$ interactions},
  author = {Xiao-Xiao Chen and Zuo-Ming Ding and Jun He},
  journal= {arXiv preprint arXiv:2504.15534},
  year   = {2025}
}

Comments

8 pages, 5 figures

R2 v1 2026-06-28T23:06:37.191Z