activity
19962011
most citedFully integrated transport approach to heavy ion reactions with an intermediate hydrodynamic stage

408 citations · 1.9k across the 46 of their papers we have counts for

collaborators
Showing 2006 · nucl-thShow all

10 papers · 2 filters

nucl-th200612 cited

Transport model analysis of the transverse momentum and rapidity dependence of pion interferometry at SPS energies

Qingfeng Li, Marcus Bleicher, Xianglei Zhu +1

Based on the UrQMD transport model, the transverse momentum and the rapidity dependence of the Hanbury-Brown-Twiss (HBT) radii , , as well as the cross term $R_{OL}…

nucl-th20063 cited

Baryon-Strangeness Correlations from Hadron/String- and Quark-Dynamics

Stephane Haussler, Marcus Bleicher

Baryon-strangeness correlations () are studied with a hadron/string transport approach (UrQMD) and a dynamical quark recombination model (quark molecular dynamics, qMD) for…

nucl-th2006

Longitudinal flow and onset of deconfinement

H. Petersen, M. Bleicher

The effects of the onset of deconfinement on longitudinal and transverse flow are studied. First, we analyze longitudinal pion spectra from GeV to $\sqrt{s_{\rm N…

nucl-th2006

Effect of Rescattering on Forward-Backward Correlations

Stephane Haussler, Mohamed Abdel-Aziz, Marcus Bleicher

We use the Ultra-relativistic Quantum Molecular Dynamic model (UrQMD v2.2) to study forward-backward fluctuations and compare our results with the data published by the PHOBOS expe…

nucl-th200615 cited

Theoretical Analysis of Dilepton Spectra in Heavy Ion Collisions at GSI-FAIR Energies

Diana Schumacher, Sascha Vogel, Marcus Bleicher

This paper addresses the theoretical analysis of dilepton spectra in C+C collisions at GSI-SIS energies. Theoretical predictions for the recent data of the HADES collaboration at S…

nucl-th200621 cited

Forward-Backward Charge Fluctuations at RHIC Energies

Stephane Haussler, Mohamed Abdel-Aziz, Marcus Bleicher

We use the ultra-relativistic quantum molecular dynamic UrQMD version 2.2 to study forward backward fluctuations and compare our results with the published data by the PHOBOS.