A new family of exact analytic viscous hydrodynamic solutions is derived for Hubble-flow fireballs, in which shear viscosity cancels and only bulk viscosity affects the temperature evolution.
Accelerating hydrodynamic description of pseudorapidity density and the initial energy density in p+p, Cu+Cu, Au+Au, and Pb+Pb collisions at RHIC and LHC
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abstract
A known class of analytic, exact, accelerating solutions of prefect relativistic hydrodynamics with longitudinal acceleration is utilized to describe results on the pseudorapidity distributions for different collision systems. These results include $dN/d\eta$ measured in p+p, Cu+Cu, Au+Au, and Pb+Pb collisions at RHIC and LHC, in a broad centrality range. Going beyond the traditional Bjorken model, from the accelerating hydrodynamic description we determine the initial energy density and other thermodynamic quantities in those collisions.
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A simple family of solutions of relativistic viscous hydrodynamics for fireballs with Hubble flow and ellipsoidal symmetry
A new family of exact analytic viscous hydrodynamic solutions is derived for Hubble-flow fireballs, in which shear viscosity cancels and only bulk viscosity affects the temperature evolution.