English

Relating $D^* \bar{D}^*$ currents with $J^\pi= 0^+,1^+$ and $2^+$ to $Z_c$ states

High Energy Physics - Phenomenology 2014-02-05 v2 High Energy Physics - Experiment Nuclear Theory

Abstract

In this work we study the DDˉD^* \bar{D}^* current with QCD sum rules. We write the correlation function using the general current corresponding to the DDˉD^* \bar{D}^* system and then use spin projectors to obtain the correlation function in the 0+,1+0^+, 1^+ and 2+2^+ spin-parity configurations. The purpose of the present work is to investigate the possibility of explaining the recently reported Zc(4025)Z_c(4025) as a DDˉD^* \bar{D}^* moleculelike state. As a result we find a state for each spin case with a very similar mass: MS=0=(3943±104)M^{S=0} = \left(3943 \pm 104\right) MeV, MS=1=(3950±105)M^{S=1} = \left(3950 \pm 105\right) MeV, MS=2=(3946±104)M^{S=2} = \left(3946 \pm 104 \right) MeV. We discuss that our mass results, within error bars, for 1+1^+ or 2+2^+ are both compatible with Zc(4025)Z_c(4025). However, our results are also compatible with a possible DDˉD^* \bar{D}^* bound state, in agreement with predictions of some previous works. We have also calculated the current-state coupling which turns out to be larger in the 2+2^+ case.

Keywords

Cite

@article{arxiv.1310.0862,
  title  = {Relating $D^* \bar{D}^*$ currents with $J^\pi= 0^+,1^+$ and $2^+$ to $Z_c$ states},
  author = {K. P. Khemchandani and A. Martinez Torres and M. Nielsen and F. S. Navarra},
  journal= {arXiv preprint arXiv:1310.0862},
  year   = {2014}
}

Comments

New discussions added, corrections related to Z_c(4020) made