English

Radial Flow in Au+Au Collisions at E=0.25-1.15 A GeV

Nuclear Experiment 2016-09-08 v1

Abstract

A systematic study of energy spectra for light particles emitted at midrapidity from Au+Au collisions at E=0.25-1.15 A GeV reveals a significant non-thermal component consistent with a collective radial flow. This component is evaluated as a function of bombarding energy and event centrality. Comparisons to Quantum Molecular Dynamics (QMD) and Boltzmann-Uehling-Uhlenbeck (BUU) models are made for different equations of state.

Keywords

Cite

@article{arxiv.nucl-ex/9502001,
  title  = {Radial Flow in Au+Au Collisions at E=0.25-1.15 A GeV},
  author = {M. A. Lisa and S. Albergo and F. Bieser and F. P. Brady and Z. Caccia and D. A. Cebra and A. D. Chacon and J. L. Chance and Y. Choi and S. Costa and J. B. Elliott and M. L. Gilkes and J. A. Hauger and A. S. Hirsch and E. L. Hjort and A. Insolia and M. Justice and D. Keane and J. Kintner and H. S. Matis and M. McMahan and C. McParland and D. L. Olson and M. D. Partlan and N. T. Porile and R. Potenza and G. Rai and J. Rasmussen and H. G. Ritter and J. Romanski and J. L. Romero and G. V. Russo and R. Scharenberg and A. Scott and Y. Shao and B. K. Srivastava and T. J. M. Symons and M. Tincknell and C. Tuve and S. Wang and P. Warren and G. D. Westfall and H. H. Wieman and K. Wolf},
  journal= {arXiv preprint arXiv:nucl-ex/9502001},
  year   = {2016}
}

Comments

10 pages of text and 4 figures (all ps files in a uuencoded package).