Theoretical study of the $\Delta^{++}-\Delta^-$ configuration in the deuteron using antiproton beam
Abstract
We study the manifestation of the component of the deuteron wave function in the exclusive reaction . Due to the large binding energy the internal motion in the 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 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 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