Physical Review C · 1992 · 17 citations · 20 references
EngineeringNuclear PhysicsHigh-energy Nuclear CollisionsBeam EnergiesHeavy Ion PhysicCollective MotionLepton-nucleon ScatteringHigh-energy Nuclear ReactionPhysicsAr+pb CollisionCosmic RayRapidity DistributionsStreamer ChamberNatural SciencesParticle PhysicsApplied PhysicsShort-range CorrelationsCollision DetectionEnergy Dependence
The energy dependence of rapidity distributions and flow effects was studied in central Ar+Pb collisions at 400, 800, and 1800 MeV/nucleon using a streamer chamber. Rapidity distributions for proton and pions are found to have a Gaussian shape whereas those for deuterons exhibit a two-peak structure at the two higher energies. The average in-plane transverse momentum per/nucleon and per/event shows saturation of flow around 800 MeV/nucleon for this asymmetric system. The aspect ratio of the sphericity tensor is closely correlated with the flow angle. This correlation appears to be independent of beam energy. The number of participating nucleons in central collisions varies from 213 at 400 to 135 at 1800 MeV/nucleon indicating that at the lowest energy almost the entire target nucleus participates in the collision.
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Collective Flow Observed in Relativistic Nuclear Collisions
H.-Å. Gustafsson, H.H. Gutbrod, B. W. Kolb et al. · Physical Review Letters · 1984 · 430 citations
Nuclear Shock Waves in Heavy-Ion Collisions
W. Scheid, H. Müller, Walter Greiner · Physical Review Letters · 1974 · 383 citations
H H Gutbrod, A. M. Poskanzer, H G Ritter · Reports on Progress in Physics · 1989 · 228 citations
Engineering, Experimental Technology, Mechanical Engineering +17
Nuclear Collective Flow as a Function of Projectile Energy and Mass
K. G. R. Doss, H.-Å. Gustafsson, H.H. Gutbrod et al. · Physical Review Letters · 1986 · 166 citations · Full text