English

The relativistic three-body scattering and the $D^0D^{*+}-D^+D^{*0}$ system

High Energy Physics - Phenomenology 2024-02-06 v1 High Energy Physics - Experiment Nuclear Theory

Abstract

Scattering amplitudes involving three-particle scattering processes are investigated within the isobar approximation which respects constraints from two- and three-body unitarity. The particular system considered is the D0D+D+D0D^0D^{*+}-D^+D^{*0}, where the D+D^{*+} (D0)(D^{*0}) enters as a pp-wave D+π0D^+\pi^0 or D0π+D^0\pi^+ (D0π0D^0\pi^0 or D+πD^+\pi^-) resonance. The interaction potentials in the coupled-channel D0D+D+D0D^0D^{*+}-D^+D^{*0} system contain the σ\sigma, ρ\rho, ω\omega and π\pi-exchange. The analytic continuation of the amplitudes across the three-body unitary cuts is investigated to search for poles on the unphysical Riemann sheets. Associated with an unstable particle D+D^{*+} (D0)(D^{*0}) is a complex two-body unitarity cut, through which one can further analytically continue into another unphysical Riemann sheet. Dynamical singularities emerged from the π\pi-exchange potential are stressed. The pole generated from the D0D+D+D0D^0D^{*+}-D^+D^{*0} interaction and its line shape in D0D0π+D^0D^0\pi^+ break-up production are in agreement with double-charmed tetraquark Tcc+T_{cc}^+ observed by the LHCb Collaboration.

Keywords

Cite

@article{arxiv.2402.02151,
  title  = {The relativistic three-body scattering and the $D^0D^{*+}-D^+D^{*0}$ system},
  author = {Xu Zhang},
  journal= {arXiv preprint arXiv:2402.02151},
  year   = {2024}
}