Transverse-momentum spectra of strange particles produced in Pb+Pb collisions at TeV in the chemical non-equilibrium model
arXiv:1405.7252 · doi:10.1103/PhysRevC.90.054912
Abstract
We analyze the transverse-momentum spectra of strange hadrons produced in Pb+Pb collisions at the collision energy TeV. Our approach combines the concept of chemical non-equilibrium with the single-freeze-out scenario. The two ideas are realized in the framework of the Cracow model, whose thermodynamic parameters have been established in earlier studies of the ratios of hadron multiplicities. The geometric parameters of the model are obtained from the fit to the spectra of pions and kaons, only. Using these parameters, we obtain an excellent description of the spectra of protons and the , , and mesons. A satisfactory description is also obtained for the , and hyperons. Further improvement of the hyperon spectra may be achieved if we assume that they are emitted from a smaller, internal part of the system but at the same thermodynamic conditions. Our work not only includes all particle species measured up to now in heavy-ion collisions at the LHC energies but, in addition, discusses the centrality dependence of the particle production.
References in corpus (9)
- Therminator: Thermal heavy-Ion generator
- Particle spectra in Pb-Pb collisions at 2.76 TeV
- Constraints on dark matter particles from theory, galaxy observations and N-body simulations
- Uniform description of bulk observables in the hydrokinetic model of A+A collisions at RHIC and LHC
- Strangeness production from SPS to LHC
- Centrality dependence of strangeness production in heavy-ion collisions as a geometrical effect of core-corona superposition
- Bose-Einstein Condensation in the Relativistic Pion Gas: Thermodynamic Limit and Finite Size Effects
- Bose-Einstein Condensation of Pions in High Multiplicity Events
- The statistical hadronization model approach to GeV Au-Au collisions: -spectra fits and global variable predictions
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