English

Theoretical study of the $\Delta^{++}-\Delta^-$ configuration in the deuteron using antiproton beam

Nuclear Theory 2018-11-28 v3 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment

Abstract

We study the manifestation of the Δ++Δ\Delta^{++}-\Delta^- component of the deuteron wave function in the exclusive reaction pˉdππΔ++\bar p d \to \pi^- \pi^- \Delta^{++}. Due to the large binding energy the internal motion in the ΔΔ\Delta-\Delta system is relativistic. We take this into account within the light-cone (LC) wave function formalism and, indeed, found large differences between calculations based on the LC and non-relativistic (NR) wave functions. We demonstrate, that the consistent LC treatment of the ΔΔ\Delta-\Delta system plays the key role in the separation of the signal and background. Within the LC approach, the characteristic shape of the momentum distribution of the ΔΔ\Delta-\Delta bound system predicted by the meson-exchange model is well visible on the background of usual annihilations at beam momenta between 10 and 15 GeV/c.

Keywords

Cite

@article{arxiv.1807.05105,
  title  = {Theoretical study of the $\Delta^{++}-\Delta^-$ configuration in the deuteron using antiproton beam},
  author = {A. B. Larionov and A. Gillitzer and J. Haidenbauer and M. Strikman},
  journal= {arXiv preprint arXiv:1807.05105},
  year   = {2018}
}

Comments

44 pages, 21 figures, sect. 3 extended, references added, results unchanged, accepted in Phys. Rev. C