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arXiv:nucl-th/0204062·v1·Nuclear Theory

The Decoupling Problem at RHIC

Denes Molnar🇺🇸 · Miklos Gyulassy (Columbia University, New York)🇺🇸

Abstract

We investigate whether it is possible to dynamically generate from classical transport theory the observed surprising Rout ~ Rside in Au+Au at s^1/2 = 130A GeV at RHIC. We obtained covariant solutions to the Boltzmann transport equation via the MPC technique, for a wide range of partonic initial conditions and opacities. We demonstrate that there exist transport solutions that yield a freezeout distribution with Rout < Rside for Kperp > ~ 1.5 GeV. These solutions correspond to continuous evaporation-like freezeout, where the emission duration is comparable to the source size. Naively this would mean Rout > Rside. Nevertheless, our sources exhibit Rout < Rside because they are narrower in the 'out' than in the 'side' direction and, in addition, a positive x_out-t correlation develops reducing Rout further.

Comments: Talk given at the Budapest 2002 Intl. Workshop on "Quark and hadron dynamics in relativistic heavy-ion collisions", March 3-7, 2002, Budapest, Hungary. To appear in proceedings. LaTeX source + 4 EPS figures

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