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Charge structure and correlation features in pn multiparticle final states at 195 GeV/c

H. Bŕaun, Francois Etienne, A. Fridman, J. Gerber, P. Juillot, GERHARD MAURER, M.E. Michalon-Mentzer, Ch. Voltolini, Yael Eisenberg, Bernard Haber, D. Hochman, U. Karshon, E. E. Ronat, A. Shapira, R. Yaari, G. Yekutieli

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Abstract

We have investigated the charge distribution and the correlation between charged particles in $\mathrm{pn}$ collisions at 195 GeV/c. The experiment was carried out at Fermilab with the 30-in. hybrid system. The charge and rapidity structures of the events were studied and the data manifest, among other things, a tendency toward local charge conservation. A strong short-range correlation feature has been observed in rapidity space for like and unlike charged pairs. Some correlation effects between transverse momenta have also been seen. An interpretation of our data in terms of cluster models is discussed.

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What this paper is about

We have investigated the charge distribution and the correlation between charged particles in $\mathrm{pn}$ collisions at 195 GeV/c. The experiment was carried out at Fermilab with the 30-in. hybrid system. The charge and rapidity structures of the events were studied and the data manifest, among other things, a tendency toward local charge conservation. A strong short-range correlation feature has been observed in rapidity space for like and unlike charged pairs. Some correlation effects between transverse momenta have also been seen. An interpretation of our data in terms of cluster models is discussed.

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Available abstract

We have investigated the charge distribution and the correlation between charged particles in $\mathrm{pn}$ collisions at 195 GeV/c. The experiment was carried out at Fermilab with the 30-in. hybrid system. The charge and rapidity structures of the events were studied and the data manifest, among other things, a tendency toward local charge conservation. A strong short-range correlation feature has been observed in rapidity space for like and unlike charged pairs. Some correlation effects between transverse momenta have also been seen. An interpretation of our data in terms of cluster models is discussed.

Key concepts: Rapidity, Physics, Charge (physics), Particle physics, Fermilab, Distribution (mathematics), Nuclear physics, Hadron

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