Statistical Fluctuations and Correlations in Hadronic Equilibrium Systems
arXiv:1008.1990
Abstract
This thesis is dedictaed to the study of fluctuation and correlation observables of hadronic equilibrium systems. The statistical hadronization model of high energy physics, in its ideal, i.e. non-interacting, gas approximation will be investigated in different ensemble formulations. The hypothesis of thermal and chemical equilibrium in high energy interaction will be tested against qualitative and quantitative predictions.
PhD thesis
References in corpus (26)
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- Susceptibilities near the QCD (tri)critical point
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- Quark number susceptibilities: lattice QCD versus PNJL model
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- Long Range Forward-Backward Correlations and the Color Glass Condensate
- Strangeness production from SPS to LHC
- Status of Chemical Freeze-Out
- critRHIC: The RHIC Low Energy Program
- Fast Equilibration of Hadrons in an Expanding Fireball
- Forward-Backward Multiplicity Correlations in sqrt(s_NN) = 200 GeV Gold-Gold Collisions
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- Hadronic Fluctuations and Correlations
- Chemical Equilibrium in Heavy Ion Collisions: Rapidity Dependence
- Probability distributions in statistical ensembles with conserved charges
- Fluctuations of the Ratio in Nucleus-Nucleus Collisions: Statistical and Transport Models
- Statistical hadronization of charm: from FAIR to the LHC
- Baryon Number and Electric Charge Fluctuations in Pb+Pb Collisions at SPS energies
- Thermodynamic limit and semi--intensive quantities
- Searching for the Critical Point of QCD: Theoretical Benchmark Calculations
- Statistical Ensembles with Fluctuating Extensive Quantities
- Canonical suppression in microscopic transport models
- Strangeness enhancement at LHC
- Susceptibilities and fluctuations in a Quark-Hadron System with Dynamical Recombination
- Statistical Model Predictions for p+p and Pb+Pb Collisions at LHC