English

Two-pole structure of the $D^\ast_0(2400)$

High Energy Physics - Phenomenology 2017-04-05 v1 High Energy Physics - Lattice

Abstract

The so far only known charmed non-strange scalar meson is dubbed as D0(2400)D_0^*(2400) in the Review of Particle Physics. We show, within the framework of unitarized chiral perturbation theory, that there are in fact two (I=1/2,JP=0+)(I=1/2, J^P=0^+) poles in the region of the D0(2400)D_0^*(2400) in the coupled-channel DπD\pi, DηD\eta and DsKˉD_s\bar K scattering amplitudes. With all the parameters previously fixed, we predict the energy levels for the coupled-channel system in a finite volume, and find that they agree remarkably well with recent lattice QCD calculations. This successful description of the lattice data is regarded as a strong evidence for the two-pole structure of the D0(2400)D_0^*(2400). With the physical quark masses, the poles are located at (21058+6i10212+10)\left(2105^{+6}_{-8}-i\,102^{+10}_{-12}\right)~MeV and (245126+36i1348+7)\left(2451^{+36}_{-26}-i\,134^{+7}_{-8}\right)~MeV, with the largest couplings to the DπD\pi and DsKˉD_s\bar K channels, respectively. Since the higher pole is close to the DsKˉD_s\bar K threshold, we expect it to show up as a threshold enhancement in the DsKˉD_s\bar K invariant mass distribution. This could be checked by high-statistic data in future experiments. We also show that the lower pole belongs to the same SU(3) multiplet as the Ds0(2317)D_{s0}^*(2317) state. Predictions for partners in the bottom sector are also given.

Keywords

Cite

@article{arxiv.1610.06727,
  title  = {Two-pole structure of the $D^\ast_0(2400)$},
  author = {Miguel Albaladejo and Pedro Fernandez-Soler and Feng-Kun Guo and Juan Nieves},
  journal= {arXiv preprint arXiv:1610.06727},
  year   = {2017}
}

Comments

6 pages, 5 figures