New charged resonance $Z_{c}^{-}(4100)$: the spectroscopic parameters and width
Abstract
The mass, coupling and width of the newly observed charged resonance are calculated by treating it as a scalar four-quark system with a diquark-antidiquark structure. The mass and coupling of the state are calculated using the QCD two-point sum rules. In these calculations we take into account contributions of the quark, gluon and mixed condensates up to dimension ten. The spectroscopic parameters of obtained by this way are employed to study its -wave decays to , , , and final states. To this end, we evaluate the strong coupling constants corresponding to the vertices , , , and respectively. The couplings , , and are computed by means of the QCD three-point sum rule method, whereas is obtained from the QCD light-cone sum rule approach and soft-meson approximation. Our results for the mass and total width of the resonance are in excellent agreement with the existing LHCb data.
Keywords
Cite
@article{arxiv.1812.10094,
title = {New charged resonance $Z_{c}^{-}(4100)$: the spectroscopic parameters and width},
author = {H. Sundu and S. S. Agaev and K. Azizi},
journal= {arXiv preprint arXiv:1812.10094},
year = {2019}
}
Comments
14 Pages, 4 Figures and 1 Table