Discrepancy in low transverse momentum dileptons from relativistic heavy-ion collisions
Abstract
The dilepton transverse momentum spectra and invariant mass spectra for low ~GeV/c in Au+Au collisions of different centralities at = 200 GeV are studied within the parton-hadron-string dynamics (PHSD) transport approach. The PHSD describes the whole evolution of the system on a microscopic basis, incorporates hadronic and partonic degrees-of-freedom, the dynamical hadronization of partons and hadronic rescattering. For dilepton production in p+p, p+A and A+A reactions the PHSD incorporates the leading hadronic and partonic channels (also for heavy flavors) and includes in-medium effects such as a broadening of the vector meson spectral functions in hadronic matter and a modification of initial heavy-flavor correlations by interactions with the partonic and hadronic medium. The transport calculations reproduce well the momentum integrated invariant mass spectra from the STAR Collaboration for minimum bias Au+Au collisions at = 200 GeV, while the description of the STAR data - when gating on low GeV/c - is getting worse when going from central to peripheral collisions. An analysis of the transverse momentum spectra shows that the data for peripheral (60-80\%) collisions are well reproduced for GeV/c while the strong peak at low GeV/c, that shows up in the experimental data for the mass bins ( GeV and GeV), is fully missed by the PHSD and cannot be explained by the standard in-medium effects. This provides a new puzzle for microscopic descriptions of low dilepton data from the STAR Collaboration.
Keywords
Cite
@article{arxiv.1806.09377,
title = {Discrepancy in low transverse momentum dileptons from relativistic heavy-ion collisions},
author = {Taesoo Song and Wolfgang Cassing and Pierre Moreau and Elena Bratkovskaya},
journal= {arXiv preprint arXiv:1806.09377},
year = {2018}
}
Comments
6 pages, 5 figures