Elliptic flow in heavy-ion collisions at intermediate energy: the role of impact parameter, mean field potential, and collision term
arXiv:2210.08213 · doi:10.1016/j.physletb.2023.137685
Abstract
Within the ultrarelativistic quantum molecular dynamics (UrQMD) model, by reverse tracing nucleons that are finally emitted at mid-rapidity (|| < 0.1) in the entire reaction process, the time evolution of elliptic flow () of these traced nucleons produced in Au+Au collisions at beam energy of 0.4 GeVnucleon with different impact parameters () is studied. The initial value of is positive and increases with , then it decreases as time passes and tends to saturate at a negative value. It is found that nucleon-nucleon collisions always depress the value of (enhance the out-of-plane emission), while the nuclear mean field potential may slightly raise the value of during the expansion stage in peripheral reactions. The related density mostly probed by of nucleons at mid-rapidity is found to be 60% of the maximum density reached during the collisions.
7 pages, 5 figures
References in corpus (15)
- Constraining Neutron-Star Matter with Microscopic and Macroscopic Collisions
- Results of the ASY-EOS experiment at GSI: The symmetry energy at suprasaturation density
- Parton transport and hadronization from the dynamical quasiparticle point of view
- Probing the Symmetry Energy with the Spectral Pion Ratio
- Further developments of a multi-phase transport model for relativistic nuclear collisions
- Directed, elliptic and higher order flow harmonics of protons, deuterons and tritons in Au+Au collisions at GeV
- Transport approaches for the Description of Intermediate-Energy Heavy-Ion Collisions
- Collision dynamics at medium and relativistic energies
- Progress of Quantum Molecular Dynamics model and its applications in Heavy Ion Collisions
- -clustering effect on flows of direct photons in heavy-ion collisions
- Elliptic flow in transport theory and hydrodynamics
- Insights on pion production mechanism and symmetry energy at high density
- Accessing the in-medium effects on nucleon-nucleon elastic cross section with collective flows and nuclear stopping
- Number-of-constituent-quark scaling of elliptic flow: a quantitative study
- Observables in ultrarelativistic heavy-ion collisions from two different transport approaches for the same initial conditions
Cited by in corpus (3)
- Decoding the flow evolution in Au+Au reactions at GeV using hadron flow correlations and dileptons
- Impact of quadrupole deformation on intermediate-energy heavy-ion collisions
- Evolutions of in-medium baryon-baryon scattering cross sections and stiffness of dense nuclear matter from Bayesian analyses of FOPI proton flow excitation functions