Dileptons in a coarse-grained transport approach
arXiv:1509.05887 · doi:10.1088/1742-6596/668/1/012059
Abstract
We calculate dilepton spectra in heavy-ion collisions using a coarse-graining approach to the simulation of the created medium with the UrQMD transport model. This enables the use of dilepton-production rates evaluated in equilibrium quantum-field theory at finite temperatures and chemical potentials.
4 pages, 2 figures, contribution to the proceedings of "The 15th International Conference on Strangeness in Quark Matter" (SQM 2015), 06-11 July in Dubna, Russia
References in corpus (13)
- Space-time evolution of bulk QCD matter
- Highly-anisotropic and strongly-dissipative hydrodynamics for early stages of relativistic heavy-ion collisions
- Comprehensive Interpretation of Thermal Dileptons at the SPS
- Evidence for the production of thermal muon pairs with masses above 1 GeV/c^2 in 158A GeV Indium-Indium Collisions
- NA60 results on thermal dimuons
- Dielectron production in Ar+KCl collisions at 1.76A GeV
- Low Mass Dimuons Produced in Relativistic Nuclear Collisions
- Thermal Dimuon Yields at NA60
- Dilepton production in proton-induced reactions at SIS energies with the GiBUU transport model
- Dilepton production and reaction dynamics in heavy-ion collisions at SIS energies from coarse-grained transport simulations
- Low mass dilepton production at ultrarelativistic energies
- A coarse-graining approach for dilepton production at SPS energies
- Dilepton yields from Brown-Rho scaled vector mesons including memory effects