English

Decoding the flow evolution in Au+Au reactions at $1.23 A$ GeV using hadron flow correlations and dileptons

Nuclear Theory 2023-05-24 v1 Nuclear Experiment

Abstract

We investigate the development of the directed, v1v_1, and elliptic flow, v2v_2, in heavy ion collisions in mid-central Au+Au reactions at Elab=1.23AE_\mathrm{lab}=1.23 A GeV. We demonstrate that the elliptic flow of hot and dense matter is initially positive (v2>0v_2>0) due to the early pressure gradient. This positive v2v_2 transfers its momentum to the spectators, which leads to the creation of the directed flow v1v_1. In turn, the spectator shadowing of the in-plane expansion leads to a preferred decoupling of hadrons in the out-of-plane direction and results in a negative v2v_2 for the observable final state hadrons. We propose a measurement of v1v2v_1-v_2 flow correlations and of the elliptic flow of dileptons as methods to pin down this evolution pattern. The elliptic flow of the dileptons allows then to determine the early-state EoS more precisely, because it avoids the strong modifications of the momentum distribution due to shadowing seen in the protons. This opens the unique opportunity for the HADES and CBM collaborations to measure the Equation-of-State directly at 2-3 times nuclear saturation density.

Keywords

Cite

@article{arxiv.2302.13919,
  title  = {Decoding the flow evolution in Au+Au reactions at $1.23 A$ GeV using hadron flow correlations and dileptons},
  author = {Tom Reichert and Oleh Savchuk and Apiwit Kittiratpattana and Pengcheng Li and Jan Steinheimer and Mark Gorenstein and Marcus Bleicher},
  journal= {arXiv preprint arXiv:2302.13919},
  year   = {2023}
}

Comments

8 pages, 5 figures

R2 v1 2026-06-28T08:50:46.435Z