Dissipative Hydrodynamic Effects on Baryon Stopping
Abstract
The quark-gluon plasma is considered to behave as a relativistic viscous fluid in the high-energy heavy ion collisions. In this study, I develop and estimate a second order dissipative hydrodynamic model at finite baryon density with effects of baryon dissipation together with those of shear and bulk viscosities. It is found that the hydrodynamic evolution effectively reduces baryon stopping, suggesting that the collisions are less transparent at the initial stage. Also the net baryon distribution is found sensitive to baryon dissipation as well as to viscosities. The results indicate that the dissipative hydrodynamic modeling would be important for understanding unique properties of the hot medium even in the high-energy collisions.
Cite
@article{arxiv.1204.4713,
title = {Dissipative Hydrodynamic Effects on Baryon Stopping},
author = {Akihiko Monnai},
journal= {arXiv preprint arXiv:1204.4713},
year = {2012}
}
Comments
10 pages, 6 figures; published in Physical Review C