Freeze-out in hydrodynamical models in relativistic heavy ion collisions
arXiv:nucl-th/0001049 · doi:10.1016/S0375-9474(99)85096-9
Abstract
Freeze-out of particles across 3-dimensional space-time hypersurface with space-like normal is discussed in a simple kinetic model. The final momentum distribution of emitted particles shows a non-exponential transverse momentum spectrum, which is in quantitative agreement with recently measured SPS pion and spectra.
4 pages, 1 figure. Quark Matter'99 Proceedings
References in corpus (1)
Cited by in corpus (22)
- New Solutions to Covariant Non-equilibrium Dynamics
- Fluctuations of the Initial Conditions and the Continuous Emission in Hydrodynamic Description of Two-Pion Interferometry
- Strange particle production at RHIC in a single-freeze-out model
- The initial state of ultra-relativistic heavy ion collision
- Effective String Rope Model for the initial stages of Ultra-Relativistic Heavy Ion Collisions
- Covariant description of kinetic freeze out through a finite space-like layer
- Polarization phenomenon in heavy-ion collisions
- Relativistic Kinetic Equations for Finite Domains and Freeze-out Problem
- Anisotropic flow at RHIC: How unique is the number-of-constituent-quark scaling?
- Non-equilibrated post freeze out distributions
- Matching Stages of Heavy Ion Collision Models
- Covariant description of kinetic freeze out through a finite time-like layer
- Modified Boltzmann Transport Equation
- Modified Boltzmann Transport Equation and Freeze Out
- Statistical Hadronization of Supercooled Quark-Gluon Plasma
- Particle spectra and hydro-inspired models
- Study of Rotating High Energy Systems with the Differential HBT Method
- Can supercooling explain the HBT puzzle?
- Kinetic description of particle emission from expanding source
- Pion Mass Shift and the Kinetic Freeze Out Process
- Equation of State and Phase Transitions in the Nuclear and Hadronic Systems
- Phase transitions in high energy heavy ion collisions within fluid dynamics