Van der Waals Excluded Volume Model for Lorentz Contracted Rigid Spheres
arXiv:nucl-th/0004061 · doi:10.1016/S0370-2693(00)00690-0
Abstract
Conventional cluster and virial expansions are generalized to momentum dependent inter-particle potentials. The model with Lorentz contracted hard core potentials is considered, e.g. as hadron gas model. A Van der Waals-type model with a temperature dependent excluded volume is derived. Lorentz contraction effects at given temperature are stronger for light particles and make their effective excluded volume smaller than that of heavy ones.
9 pages, 3 figures
References in corpus (3)
Cited by in corpus (25)
- The hadronic SU(3) Parity Doublet Model for Dense Matter, its extension to quarks and the strange equation of state
- An effective chiral Hadron-Quark Equation of State
- Hybrid Stars in an SU(3) Parity Doublet Model
- Higher-order baryon number susceptibilities: interplay between the chiral and the nuclear liquid-gas transitions
- The statistical multifragmentation model for liquid-gas phase transition with a compressible nuclear liquid
- Hadron Resonance Gas Model with Induced Surface Tension
- The role of strangeness in hybrid stars and possible observables
- Three-body collisions in Boltzmann-Uehling-Uhlenbeck theory
- Quark-Gluon Bags with Surface Tension
- The Van-der-Waals Gas EOS for the Lorentz Contracted Spheres
- Excluded Volume Effects in the Quark Meson Coupling Model
- Modelling Hybrid Stars in Quark-Hadron Approaches
- Exactly Solvable Models: The Road Towards a Rigorous Treatment of Phase Transitions in Finite Systems
- Second Cluster Integral and Excluded Volume Effects for the Pion Gas
- Threshold Collision Energy of the QCD Phase Diagram Tricritical Endpoint
- Effect of a magnetic field on the thermodynamic properties of a high-temperature hadron resonance gas with van der Waals interactions
- Exactly Solvable Model for the QCD Tricritcal Endpoint
- Thermodynamics of the low density excluded volume hadron gas
- Self-consistent Treatment of Quantum Gases of D-dimensional Hard Spheres Beyond the Van der Waals Approximation
- Hadron resonance gas EoS and the fluidity of matter produced in HIC
- Conserved Charge Fluctuations in a Chiral Hadronic Model including Hadrons and Quarks
- Collision Energy Dependence of Particle Ratios and Freeze-out Parameters in Ultra Relativistic Nucleus Nucleus Collisions
- Chiral Hadronic Mean Field Model including Quark Degrees of Freedom
- Strangelets formation in high energy heavy-ion collisions
- Induced Surface and Curvature Tensions Equation of State of Hadrons with Relativistic Excluded Volumes and its Relation to Morphological Thermodynamics