1,276 research outputs found

    Absorption and J/psi Suppression in Heavy Ion Collisions

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    We discuss the J/psi suppression in the framework of multiple collision models. From the analysis of the Pb-Pb NA50 data we conclude that the strength of the absorption has increased, but we find no clear evidence for the formation of the quark-gluon plasma.Comment: 8 pages, 4 figure

    Particle rapidity density and collective phenomena in heavy ion collisions

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    We analyse recent results on charged particle pseudo-rapidity densities from RHIC in the framework of the Dual String Model, in particular when including string fusion. The model, in a simple way, agrees with all the existing data and is consistent with the presence of the percolation transition to the Quark-Gluon Plasma already at the CERN-SPS. It leads to strict saturation of the particle (pseudo-)rapidity density, normalised to the number of participant nucleons, as that number increases. A comparison with recent WA98 data is presented.Comment: 6 pages, 3 ps figures, Latex2e with amsmath. To appear in the Proceedings of the XXX International Symposium on Multiparticle Dynamics (Lake Balaton, October 2000

    Evolution of particle density in high-energy pp collisions

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    We study the evolution of the particle density, dn/d\eta at fixed \eta with the beam rapidity Y in the framework of string percolation model. Our main results are: (i) The width of the "plateau" increases proportionally to Y, (ii) limiting fragmentation is violated, and (iii) the particle density, reduces to a step function.Comment: 8 pages, 2 figures, to appear in Nuclear Physics A. Minor changes are don

    The black disk and the dip in the differential elastic cross section at asymptotic energy

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    We test the validity of the black disk limit in elastic scattering by studying the evolution of the dip in the scaling variable τ=−tDσtot\tau=-t_{D}\sigma^{tot}, where tDt_{D} is the transverse momentum squared at the dip and σtot\sigma_{tot} the total cross section. As s→∞s\rightarrow \infty and −tD→0-t_{D} \rightarrow 0 , τ\tau may consistently be approaching the black disc value, τ→s→∞τBD=35.92\tau \xrightarrow[ \sqrt{s}\rightarrow \infty ]{} \tau_{BD}=35.92 GeV2^{2} mb.Comment: 6 pages, 2 figure
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