Fast Equilibration of Hadrons in an Expanding Fireball
Jacquelyn Noronha-Hostler, Carsten Greiner, Igor A. Shovkovy
Abstract
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Jacquelyn Noronha-Hostler, Carsten Greiner, Igor A. Shovkovy
Abstract
Open-access reader
Because of long chemical equilibration times for standard hadronic reactions in a hadron gas in relativistic heavy ion collisions, it was suggested that hadrons are born into equilibrium after the quark gluon plasma is formed. We develop a dynamical scheme, using master equations, in which Hagedorn states contribute to fast chemical equilibration times of baryons and kaons, just below the critical temperature, estimates of which are derived analytically. The hadrons quickly equilibrate for an initial over- or underpopulation of Hagedorn states. Our particle ratios compared to BNL Relativistic Heavy Ion Collider show a close match.
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Because of long chemical equilibration times for standard hadronic reactions in a hadron gas in relativistic heavy ion collisions, it was suggested that hadrons are born into equilibrium after the quark gluon plasma is formed. We develop a dynamical scheme, using master equations, in which Hagedorn states contribute to fast chemical equilibration times of baryons and kaons, just below the critical temperature, estimates of which are derived analytically. The hadrons quickly equilibrate for an initial over- or underpopulation of Hagedorn states. Our particle ratios compared to BNL Relativistic Heavy Ion Collider show a close match.
Key concepts: Physics, Hadron, Relativistic Heavy Ion Collider, Baryon, Quark–gluon plasma, Nuclear physics, Heavy ion, Particle physics