English

How learn the branching ratio X(3872)\to D^{*0}\bar D^0 + c.c

High Energy Physics - Phenomenology 2014-10-31 v3 High Energy Physics - Experiment Nuclear Theory

Abstract

Enfant terrible of charmonium spectroscopy, the resonance X(3872)X(3872), generated a stream of interpretations and ushered in a new exotic XYZXYZ spectroscopy. In th meantime, many (if not all) characteristics of X(3872)X(3872) are rather ambiguous. We construct spectra of decays of the resonance X(3872)X(3872) with good analytical and unitary properties which allows to define the branching ratio of the X(3872)D0Dˉ0+c.c.X(3872) \to D^{*0}\bar D^0 + c.c. decay studying only one more decay, for example, the X(3872)π+πJ/ψ(1S)X(3872)\to\pi^+\pi^- J/\psi(1S) decay. We next define the range of values of the coupling constant of the X(3872)X(3872) resonance with the D0Dˉ0D^{*0}\bar D^0 system. Finally, we show that our spectra are effective means of selection of models for the resonance X(3872)X(3872).

Keywords

Cite

@article{arxiv.1310.1436,
  title  = {How learn the branching ratio X(3872)\to D^{*0}\bar D^0 + c.c},
  author = {N. N. Achasov and E. V. Rogozina},
  journal= {arXiv preprint arXiv:1310.1436},
  year   = {2014}
}

Comments

8 pages, 4 figures,the published variant