The theory of strong interactions — Quantum Chromodynamics (QCD) — is well-defined mathematically. However, direct applications of this theory to experiment are rather limited due to significant technical obstacles. Even some general features of QCD remain unclear to date. Hence, phenomenological input is important and needed for practical applications, e.g. for theoretical analysis of the heavy-ion collision experiments. In this thesis the role of hadronic interactions is studied in the hadron resonance gas (HRG) model — a popular model for the confined phase of QCD. The description of hadronic interactions is based on the famous van der Waals (VDW) equation and its quantum statistical generalization. While this is not the conventional cho...
A prominent goal within the field of modern heavy-ion collisions is to uncover the phase diagram of ...
In today's universe, all ordinary matter is made up of atoms and these atoms are made up of protons ...
In this work the methods of exact quantum number conservation in statistical mechanics are discussed...
The theory of strong interactions — Quantum Chromodynamics (QCD) — is well-defined mathematically. H...
The Quark-Gluon Plasma (QGP) and its phase transition on the Quantum Chromodynamics (QCD) phase diag...
The quantum van der Waals (QvdW) extension of the ideal hadron resonance gas (HRG) model which inclu...
We consider thermodynamics of the van der Waals fluid of quantum systems. We derive general relation...
We propose a new model for hadrons with quantum mechanical attractive and repulsive interactions sen...
We have extended the hadron resonance gas (HRG) model by including the effect of both attractive and...
Matter described by quantum chromodynamics (QCD), the theory of strong interactions, may undergo pha...
The thermodynamics of strongly interacting matter has become a profound and challenging area of mode...
The nuclear liquid-gas transition at normal nuclear densities, n≈n0=0.16fm-3, and small temperatures...
The quantum-statistical Clausius-based equation of state is used to describe a system of interacting...
Here we present a generalization of the multicomponent Van der Waals equation of state in the grand ...
The study of the Quantum Chromodynamics (QCD) phase diagram has been the object of great effort in t...
A prominent goal within the field of modern heavy-ion collisions is to uncover the phase diagram of ...
In today's universe, all ordinary matter is made up of atoms and these atoms are made up of protons ...
In this work the methods of exact quantum number conservation in statistical mechanics are discussed...
The theory of strong interactions — Quantum Chromodynamics (QCD) — is well-defined mathematically. H...
The Quark-Gluon Plasma (QGP) and its phase transition on the Quantum Chromodynamics (QCD) phase diag...
The quantum van der Waals (QvdW) extension of the ideal hadron resonance gas (HRG) model which inclu...
We consider thermodynamics of the van der Waals fluid of quantum systems. We derive general relation...
We propose a new model for hadrons with quantum mechanical attractive and repulsive interactions sen...
We have extended the hadron resonance gas (HRG) model by including the effect of both attractive and...
Matter described by quantum chromodynamics (QCD), the theory of strong interactions, may undergo pha...
The thermodynamics of strongly interacting matter has become a profound and challenging area of mode...
The nuclear liquid-gas transition at normal nuclear densities, n≈n0=0.16fm-3, and small temperatures...
The quantum-statistical Clausius-based equation of state is used to describe a system of interacting...
Here we present a generalization of the multicomponent Van der Waals equation of state in the grand ...
The study of the Quantum Chromodynamics (QCD) phase diagram has been the object of great effort in t...
A prominent goal within the field of modern heavy-ion collisions is to uncover the phase diagram of ...
In today's universe, all ordinary matter is made up of atoms and these atoms are made up of protons ...
In this work the methods of exact quantum number conservation in statistical mechanics are discussed...