English

Hadron Diffractive Processes: the Structure of Soft Pomeron and Colour Screening

High Energy Physics - Phenomenology 2007-05-23 v1

Abstract

On the basis of the experimental data on diffractive processes in πp\pi p, pppp and ppˉp \bar p collisions at intermediate, moderately high and high energies, we restore the scattering amplitude related to the tt-channel exchange by vacuum quantum numbers by taking account of the diffractive ss-channel rescatterings. At intermediate and moderately high energies, the tt-channel exchange amplitude turns, with a good accuracy, into an effective pomeron which renders the results of the additive quark model. At superhigh energies the scattering amplitude provides a Froissart-type behaviour, with an asymptotic universality of cross sections such as σπptot/σpptot1\sigma^{tot}_{\pi p}/\sigma^{tot}_{pp} \to 1 at ss \to \infty. The quark structure of hadrons being taken into account at the level of constituent quarks, the cross sections of pion and proton (antiproton) in the impact parameter space of quarks, σπ(r1,r2;s)\sigma_{\pi}(\vec {r}_{1\perp},\vec {r}_{2\perp};s) and σp(r1,r2,r3;s)\sigma_p(\vec {r}_{1\perp},\vec {r}_{2\perp},\vec {r}_{3\perp};s), are found as functions of ss. These cross sections implicate the phenomenon of colour screening: they tend to zero at rirk0|\vec r_{i\perp}-\vec r_{k\perp}| \to 0. The effective colour screening radius for pion (proton) is found for different ss. The predictions for the diffractive cross sections at superhigh energies are presented.

Keywords

Cite

@article{arxiv.hep-ph/9902320,
  title  = {Hadron Diffractive Processes: the Structure of Soft Pomeron and Colour Screening},
  author = {L. G. Dakhno and V. A. Nikonov},
  journal= {arXiv preprint arXiv:hep-ph/9902320},
  year   = {2007}
}

Comments

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