English

Predicting the existence of a 2.9 GeV $Df_0(980)$ molecular state

High Energy Physics - Phenomenology 2013-03-14 v2 Nuclear Theory

Abstract

A DD-like meson resonance with mass around 2.9 GeV has been found in the DKKˉDK\bar K system using two independent and different model calculations based on: (1) QCD sum rules and (2) solution of Fadeev equations with input interactions obtained from effective field theories built by considering both chiral and heavy quark symmetries. The QCD sum rules have been used to study the Ds0(2317)KˉD_{s^*0}(2317) \bar{K} and Df0(980)D f_0(980) molecular currents. A resonance of mass 2.926 GeV is found with the Df0(980)D f_0(980) current. Although a state in the Ds0(2317)KˉD_{s^*0}(2317) \bar{K} current is also obtained, with mass around 2.9 GeV, the coupling of this state is found to be two times weaker than the one formed in Df0(980)D f_0(980). On the other hand, few-body equations are solved for the DKKˉD K \bar{K} system and its coupled channels with the input tt-matrices obtained by solving Bethe-Salpeter equations for the DKD K, DKˉD\bar{K} and KKˉK \bar{K} subsystems. In this study a DD-like meson with mass 2.890 GeV and full width \sim 55 MeV is found to get dynamically generated when DKKˉD K \bar{K} gets reorganized as Df0(980)D f_0(980). However, no clear signal appears for the Ds0(2317)KˉD_{s^*0}(2317) \bar{K} configuration. The striking similarity between the results obtained in the two different models indicates strongly towards the existence of a Df0(980)D f_0 (980) molecule with mass nearly 2.9 GeV.

Keywords

Cite

@article{arxiv.1209.5992,
  title  = {Predicting the existence of a 2.9 GeV $Df_0(980)$ molecular state},
  author = {A. Martínez Torres and K. P. Khemchandani and M. Nielsen and F. S. Navarra},
  journal= {arXiv preprint arXiv:1209.5992},
  year   = {2013}
}

Comments

Improved error estimation made, which lead to better conclusions. Version accepted for publication in PRD