English

Dilepton production in microscopic transport theory with in-medium $\rho$-meson spectral function

Nuclear Theory 2021-03-05 v3 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment

Abstract

We use the microscopic GiBUU transport model to calculate dilepton (e+ee^+e^-) production in heavy-ion collisions at SIS18 energies focusing on the effect of collisional broadening of the ρ\rho-meson. The collisional width of the ρ\rho-meson at finite temperature and baryon density in nuclear matter is calculated on the basis of the collision integral of the GiBUU model. A systematic comparison with HADES data on dilepton production in heavy-ion collisions is performed. The collisional broadening of the ρ\rho improves the agreement between theory and experiment for the dilepton invariant-mass distributions near the ρ\rho pole mass and for the excess radiation in Au+Au at 1.23A1.23 A GeV. We furthermore show that some remaining underprediction of the experimental dilepton spectra in C+C at 1A1 A GeV and Au+Au at 1.23A1.23 A GeV at intermediate invariant masses 0.20.40.2-0.4 GeV can be accounted for by adjusting the pnpn bremsstrahlung cross section in a way to agree with the inclusive dilepton spectrum from dpdp collisions at 1.25A1.25 A GeV.

Keywords

Cite

@article{arxiv.2009.11702,
  title  = {Dilepton production in microscopic transport theory with in-medium $\rho$-meson spectral function},
  author = {A. B. Larionov and U. Mosel and L. von Smekal},
  journal= {arXiv preprint arXiv:2009.11702},
  year   = {2021}
}

Comments

Relevant result figures replaced, correcting small bug in pion propagation, Conclusions unchanged