activity
20182021
most citedA first estimate of in Au+Au reactions at E GeV

19 citations · 20 across the 2 of their papers we have counts for

collaborators

6 papers

nucl-th20211 cited

Hubble Expansion and Freeze-Out at RHIC-BES Energies from UrQMD

Gabriele Inghirami, Tom Reichert, Marcus Bleicher

The freeze-out process in heavy ion collisions is driven by the competition between the scattering rate and the expansion rate of the matter. We analyse the expansion rate (oft…

nucl-th202019 cited

A first estimate of in Au+Au reactions at E GeV

Tom Reichert, Gabriele Inghirami, Marcus Bleicher

The HADES experiment at GSI has recently provided data on the flow coefficients for protons in Au+Au reactions at ~GeV (or $\sqrt{s_\mathrm{NN}…

hep-ph2019

Temperatures and chemical potentials at kinetic freeze-out in relativistic heavy ion collisions from coarse grained transport simulations

Gabriele Inghirami, Paula Hillmann, Boris Tomášik +1

Using the UrQMD/coarse graining approach we explore the kinetic freeze-out stage in central Au + Au collisions at various energies. These studies allow us to obtain detailed inform…

hep-ph2019

Magnetic fields in heavy ion collisions: flow and charge transport

Gabriele Inghirami, Mark Mace, Yuji Hirono +3

At the earliest times after a heavy-ion collision, the magnetic field created by the spectator nucleons will generate an extremely strong, albeit rapidly decreasing in time, magnet…

hep-ph2018

Elliptic flow and of D mesons at FAIR comparing the UrQMD hybrid model and the coarse-graining approach

Gabriele Inghirami, Hendrik van Hees, Stephan Endres +2

We present a study of the elliptic flow and of D and anti-D mesons in Au+Au collisions at FAIR energies. We propagate the charm quarks and the D mesons following a previou…

nucl-th2018

Extraction of Heavy-Flavor Transport Coefficients in QCD Matter

R. Rapp, P. B. Gossiaux, A. Andronic +28

We report on broadly based systematic investigations of the modeling components for open heavy-flavor diffusion and energy loss in strongly interacting matter in their application…