Elliptic flow in intermediate energy heavy ion collisions and in-medium effects
arXiv:nucl-th/0111035 · doi:10.1103/PhysRevC.65.064611
Abstract
We investigate elliptic flow in heavy ion collisions at intermediate energies. In doing this, we implement and use a lattice-Hamiltonian model of the nuclear interaction and we also study the effect of in-medium nucleon-nucleon cross sections that follow consistently from the momentum-dependence of the nuclear mean field.
11 pages, 10 figures updated, a few text changes, added some refs
References in corpus (4)
- Transverse momentum analysis of collective motion in relativistic nuclear collisions
- Nuclear Stopping as A Probe to In-medium Nucleon-nucleon Cross Section in Intermediate Energy Heavy Ion Collisions
- Squeeze-out of nuclear matter in peripheral heavy-ion collisions and momentum-dependent effective interactions
- Isospin effects on squeeze-out flow in heavy-ion collisions
Cited by in corpus (57)
- Recent Progress and New Challenges in Isospin Physics with Heavy-Ion Reactions
- Transport-theoretical Description of Nuclear Reactions
- Determination of the stiffness of the nuclear symmetry energy from isospin diffusion
- Nucleon-nucleon cross sections in neutron-rich matter and isospin transport in heavy-ion reactions at intermediate energies
- Nucleon Effective Masses in Neutron-Rich Matter
- Excitation function of elliptic flow in Au+Au collisions and the nuclear matter equation of state
- Elliptic flow and system size dependence of transition energies at intermediate energies
- Constraining the neutron-proton effective mass splitting in neutron-rich matter
- Mean-Field Effects on Collective Flows in High-Energy Heavy-Ion Collisions at 2-158A GeV energies
- In-medium NN cross sections determined from stopping and collective flow in intermediate-energy heavy-ion collisions
- The impact of energy conservation in transport models on the multiplicity ratio in heavy-ion collisions and the symmetry energy
- Scaling of Anisotropic Flow and Momentum-Space Densities for Light Particles in Intermediate Energy Heavy Ion Collisions
- Nuclear dynamics and particle production near threshold energies in heavy-ion collisions
- Nuclear in-medium effects and collective flows in heavy-ion collisions at intermediate energies
- The Microscopic Approach to Nuclear Matter and Neutron Star Matter
- The QCD phase diagram and Beam Energy Scan physics: a theory overview
- Progress of Quantum Molecular Dynamics model and its applications in Heavy Ion Collisions
- Determination of the nuclear incompressibility from the rapidity-dependent elliptic flow in heavy-ion collisions at beam energies 0.4\emph{A} - 1.0\emph{A} GeV
- Predicting the single-proton/neutron potentials in asymmetric nuclear matter
- Nuclear stopping and flow in heavy ion collisions and the in-medium NN cross section
- More on nucleon-nucleon cross sections in symmetric and asymmetric matter
- Probing the isospin dependence of the in-medium nucleon-nucleon cross sections with radioactive beams
- Imprints of high-momentum nucleons in nuclei on hard photons from heavy-ion collisions around the Fermi Energy
- Probing the Nuclear Symmetry Energy with Heavy-Ion Reactions Induced by Neutron-Rich Nuclei
- In-medium effects on particle production in heavy ion collisions
- Constraining nucleon high momentum in nuclei
- Extended Skyrme interactions for transport model simulations of heavy-ion collisions
- Effect of splitting of the neutron and proton effective mass on nuclear symmetry energy at finite temperature
- Effects of in-medium nucleon-nucleon cross section on collective flow and nuclear stopping in heavy-ion collisions in the Fermi-energy domain
- Scaling of anisotropy flows in intermediate energy heavy ion collisions
- Hard photon flow and photon-photon correlation in intermediate energy heavy-ion collisions
- Shear viscosity from nuclear stopping
- Nuclear collective dynamics in the lattice Hamiltonian Vlasov method
- Effect of the momentum dependence of nuclear symmetry potential on pion-/pion+ ratio in heavy-ion collisions
- Model dependence of isospin sensitive observables at high densities
- Azimuthal asymmetry of direct photons in intermediate energy heavy-ion collisions
- Scaling of Anisotropic Flows and Nuclear Equation of State in Intermediate Energy Heavy Ion Collisions
- Microscopic in-medium nucleon-nucleon cross sections with improved Pauli blocking effects
- Microscopic approach to the nucleon-nucleon effective interaction and nucleon-nucleon scattering in symmetric and isospin-asymmetric nuclear matter
- Bayesian inference of in-medium baryon-baryon scattering cross sections from HADES proton flow data
- Nucleon Effective E-Mass in Neutron-Rich Matter from the Migdal-Luttinger Jump
- Nuclear symmetry energy and proton-rich reactions at intermediate energies
- In-medium $\mbox{NN}\to \mbox{N}Δ$ cross section and its dependence on effective Lagrange parameters in isospin-asymmetric nuclear matter
- In-medium nucleon-nucleon elastic cross sections determined from nucleon-induced reaction cross sections data
- Initialization effect in heavy-ion collisions at intermediate energies
- Neural Network Emulation of Flow in Heavy-Ion Collisions at Intermediate Energies
- In-medium nucleon-nucleon cross-sections with non-spherical Pauli blocking
- Evolutions of in-medium baryon-baryon scattering cross sections and stiffness of dense nuclear matter from Bayesian analyses of FOPI proton flow excitation functions
- Probing the sensitivity of the total nucleus-nucleus reaction cross section at intermediate energies to medium effects and isospin asymmetries
- Phenomenological Scaling of Rapidity Dependence for Anisotropic Flows in 25 MeV/nucleon Ca + Ca by Quantum Molecular Dynamics Model
- In-medium potential, pion production in heavy-ion collisions and the symmetry energy
- In-medium nucleon-nucleon cross sections from relativistic ab initio calculations
- Anisotropic distribution of nucleon participating in elliptical flow
- Impact parameter dependence of the scaling of anisotropic flows in intermediate energy HIC
- Transport Model Comparison Studies of Intermediate-Energy Heavy-Ion Collisions
- Quark-Meson Coupling Model in Heavy-Ion Collision Simulations
- Covariant formulation of relativistic quantum molecular dynamics for a system of interacting wave packets