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Inclusive cross sections of proton-proton and proton-antiproton scattering

We have predicted the difference in inclusive cross sections on pseudorapidity in ${\rm d}σ^{p\bar{p}}/{\rm d}η$ and ${\rm d}σ^{pp}/{\rm d}η$ interactions at $\sqrt{s}=900$~GeV. Their ratio $R=\left({\rm d}σ^{p\bar{p}}/{\rm d}η\right)\left/\left({\rm d}σ^{pp}/{\rm d}η\right)\right.>1$ in the whole pseudorapidity range. On the basis of AGK theorem we show that the ratio of inclusive cross sections of $pp$ and $p\bar{p}$ at $\sqrt{s}=900$~GeV in the region of low transverse momenta $p_\perp$ up to 2~GeV $\left(\frac{1}{2πp_\perp}\frac{{\rm d}^2σ^{p\bar{p}}}{{\rm d}η{\rm d}p_\perp}\right)\left/\left(\frac{1}{2πp_\perp}\frac{{\rm d}^2σ^{pp}}{{\rm d}η{\rm d}p_\perp}\right)\right.=R$. Experimental measurements by the ATLAS Coll. give value $R\simeq1.2$ for interval $|η|<2.5$. The difference in inclusive cross sections results from presence of additional subprocess in $p\bar{p}$ -- hadrons production from decay of three quark strings, which is absent in $pp$ scattering.

preprint2010arXivOpen access

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