Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1836235 | Nuclear Physics A | 2015 | 23 Pages |
Abstract
In this work we study wave propagation in dissipative relativistic fluids described by a simplified set of the 2nd order viscous conformal hydrodynamic equations corresponding to Israel-Stewart theory. Small amplitude waves are studied within the linearization approximation while waves with large amplitude are investigated using the reductive perturbation method, which is generalized to the case of 2nd order relativistic hydrodynamics. Our results indicate the presence of a “soliton-like” wave solution in Israel-Stewart hydrodynamics despite the presence of dissipation and relaxation effects.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Nuclear and High Energy Physics
Authors
D.A. Fogaça, H. Marrochio, F.S. Navarra, J. Noronha,