Multistrange Particle Production and the Statistical Hadronization Model
arXiv:0912.1689 · doi:10.1103/PhysRevC.82.011901
Abstract
We consider the chemical freeze-out of , and multistrange hadrons within a Statistical Hadronization Model inspired approach. We study particle yields across a wide range of reaction energy and centrality from NA49 at SPS and STAR at RHIC experiments. We constrain the physical conditions present in the fireball source of strange hadrons, and anticipate results expected at LHC.
5p, PRC rapid communications in press
References in corpus (8)
- Systematic Measurements of Identified Particle Spectra in pp, d+Au and Au+Au Collisions from STAR
- Energy dependence of phi meson production in central Pb+Pb collisions at sqrt(s_nn) = 6 to 17 GeV
- Heavy Flavor Hadrons in Statistical Hadronization of Strangeness-rich QGP
- Strangeness production from SPS to LHC
- SHAREv2: fluctuations and a comprehensive treatment of decay feed-down
- Strangeness Chemical Equilibration in QGP at RHIC and LHC
- Critical Hadronization Pressure
- Strangeness Production in Heavy-Ion Collisions at STAR
Cited by in corpus (9)
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- Probing QCD critical fluctuations from the yield ratio of strange hadrons in relativistic heavy-ion collisions
- Particle Production in s_NN = 2.76 TeV Heavy Ion Collisions
- Strangeness in QGP: Hadronization Pressure
- Interpretation of strange hadron production at LHC
- Statistical Hadronization of Multistrange Particles
- The Mar(e)k of QGP: Strangeness