English

$N\bar D $ system: A challenge for $\bar {\rm P}$ANDA

High Energy Physics - Phenomenology 2012-05-21 v1 Nuclear Theory

Abstract

We study the NDˉN \bar D system by means of a chiral constituent quark model. This model, tuned in the description of the baryon and meson spectra as well as the NNNN interaction, provides parameter-free predictions for the charm -1 two-hadron systems. The presence of a heavy antiquark makes the interaction rather simple. We have found sharp quark-Pauli effects in some particular channels, generating repulsion, due to lacking degrees of freedom to accommodate the light quarks. Our results point to the existence of an attractive state, the ΔDˉ\Delta \bar D^* with (T,S)=(1,5/2)(T,S)=(1,5/2), presenting a resonance close to threshold. It would show up in the scattering of Dˉ\bar D mesons on nucleons as a D wave state with quantum numbers (T)JP=(1)5/2(T)J^P=(1)5/2^-. This resonance resembles our findings in the ΔΔ\Delta\Delta system, that offered a plausible explanation to the cross section of double-pionic fusion reactions through the so-called {\it ABC} effect. The study of the interaction of DD mesons with nucleons is a goal of the Pˉ\bar {\rm P}ANDA Collaboration at the European facility FAIR and, thus, the present theoretical study is a challenge to be tested at the future experiments.

Keywords

Cite

@article{arxiv.1204.5502,
  title  = {$N\bar D $ system: A challenge for $\bar {\rm P}$ANDA},
  author = {T. F. Carames and A. Valcarce},
  journal= {arXiv preprint arXiv:1204.5502},
  year   = {2012}
}

Comments

16 pages, 15 figures, accepted for publication in Phys. Rev. D

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