Dilepton production with the SMASH model
arXiv:1604.07028 · doi:10.1088/1742-6596/742/1/012034
Abstract
In this work the SMASH model is presented ("Simulating Many Accelerated Strongly-Interacting Hadrons"), a next-generation hadronic transport approach, which is designed to describe the non-equilibrium evolution of hadronic matter in heavy-ion collisions. We discuss first dilepton spectra obtained with SMASH in the few-GeV energy range of GSI/FAIR, where the dynamics of hadronic matter is dominated by the production and decay of various resonance states. In particular we show how electromagnetic transition form factors can emerge in a transport picture under the hypothesis of vector-meson dominance.
5 pages, 3 figures, proceedings of FAIRNESS 2016
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Cited by in corpus (7)
- Particle production and equilibrium properties within a new hadron transport approach for heavy-ion collisions
- "Smashing more than two": Deuteron production in relativistic heavy ion collisions via stochastic multi-particle reactions
- Dilepton production and resonance properties within a new hadronic transport approach in the context of the GSI-HADES experimental data
- Exploring the influence of bulk viscosity of QCD on dilepton tomography
- Dilepton Radiation from Strongly Interacting Systems
- Strangeness production via resonances in heavy-ion collisions at SIS energies
- Non-equilibrium dilepton production in hadronic transport approaches