English

Comparative Regge analysis of $\Lambda, \Sigma^0, \Lambda(1520)$ and $\Theta^+$ production in $\gamma p$, $\pi p$ and $pp$ reactions

Nuclear Theory 2020-05-20 v1

Abstract

Using the Quark-Gluon Strings Model -- combined with Regge phenomenology -- we perform a comparative analysis of Λ\Lambda, Σ0\Sigma^0, Λ(1520)\Lambda(1520) and Θ+\Theta^+ production in binary reactions induced by photon, pion and proton beams on the nucleon. We find that the existing experimental data on the γpK+Λ\gamma p \to K^+ \Lambda differential and total cross sections can be described very well by the model for photon energies 1161 - 16 GeV and t<2-t < 2 GeV2^2 assuming a dominant contribution of the KK^* Regge trajectory. Moreover, using the same parameters we also reproduce the total γpK+Σ0\gamma p \to K^+ \Sigma^0 and γpK+Λ(1520)\gamma p \to K^+ \Lambda(1520) cross sections suggesting a 'universality' of the Regge model. In order to check the consistency of the approach we evaluate the differential and total cross sections for the reaction πpK0Λ\pi^- p \to K^0 \Lambda which is also found to be dominated by the KK^* Regge trajectory. Using the apparent 'universality' of the Regge model we extend our scheme to the analysis of the binary reactions γpKˉ0Θ+\gamma p \to \bar{K}^0 \Theta^+, πpKΘ+\pi^- p \to K^- \Theta^+ and ppΣ+Θ+pp \to \Sigma^+ \Theta^+ as well as the exclusive and inclusive Θ+\Theta^+ production in the reactions pppKˉ0Θ+pp \to p \bar{K}^0 \Theta^+ and ppΘ+Xpp \to \Theta^+ X. Our detailed studies demonstrate that Θ+\Theta^+ production does not follow the 'universality' principle thus suggesting an essentially different internal structure of the exotic baryon relative to conventional hyperons or hyperon resonances.

Keywords

Cite

@article{arxiv.nucl-th/0506053,
  title  = {Comparative Regge analysis of $\Lambda, \Sigma^0, \Lambda(1520)$ and $\Theta^+$ production in $\gamma p$, $\pi p$ and $pp$ reactions},
  author = {V. Yu. Grishina and L. A. Kondratyuk and W. Cassing and M. Mirazita and P. Rossi},
  journal= {arXiv preprint arXiv:nucl-th/0506053},
  year   = {2020}
}

Comments

11 pages, 13 figures; accepted for publication in Eur. Phys. J. A