Published June 1, 1987 | Version v1
Journal article

Transverse momentum in high-energy nuclear collisions: Collective expansion

  • 1. Institute of Theoretical Science and Department of Physics, University of Oregon, Eugene, Oregon 97403

Description

Hadron production in the central region in high-energy nuclear collisions is investigated. The hydrodynamical expansion of a locally thermalized system is studied for both the cases with and without phase transition. The case with phase transition is considered by using a sound-velocity function c/sub s/(T) parametrized to fit the energy density determined in a lattice gauge calculation. The effect of a transverse rarefaction wave is included in the calculation of the temperature profile of the expanding fluid. The transverse-momentum distribution of hadrons is calculated by collecting all the hadrons produced when the hadron gas is cooled down to a freeze-out temperature at different times in the expansion. Fluctuation in initial temperature and radius is allowed due to variation in impact parameter. On the basis of a study of the thermalization process in the parton model we impose a constraint on the initial temperature and the thermalization time, the simultaneous variation of both of which gives rise to a relationship between the average transverse momentum and rapidity density. We have found that there is no so-called ''plateau'' region in that relationship. The implication on the diagnostics of a quark-gluon plasma is discussed

Additional details

Publishing Information

Journal Title
Phys. Rev., D
Journal Volume
35
Journal Issue
11
Series
Phys. Rev., D.
Journal Page Range
3409-3419
ISSN
0556-2821
CODEN
PRVDA