most citedTransport coefficients for bulk viscous evolution in the relaxation time approximation

118 citations · 241 across the 5 of their papers we have counts for

collaborators

5 papers

nucl-th201641 cited

Quasiparticle second-order viscous hydrodynamics from kinetic theory

Leonardo Tinti, Amaresh Jaiswal, Radoslaw Ryblewski

We present the derivation of second-order relativistic viscous hydrodynamics from an effective Boltzmann equation for a system consisting of quasiparticles of a single species. We…

nucl-th201464 cited

Relativistic third-order viscous corrections to the entropy four-current from kinetic theory

Chandrodoy Chattopadhyay, Amaresh Jaiswal, Subrata Pal +1

By employing a Chapman-Enskog like iterative solution of the Boltzmann equation in relaxation-time approximation, we derive a new expression for the entropy four-current up to thir…

nucl-th20141 cited

Formulation of relativistic dissipative fluid dynamics and its applications in heavy-ion collisions

Amaresh Jaiswal

Relativistic fluid dynamics finds application in astrophysics, cosmology and the physics of high-energy heavy-ion collisions. In this thesis, we present our work on the formulation…

hep-ph2014118 cited

Transport coefficients for bulk viscous evolution in the relaxation time approximation

Amaresh Jaiswal, Radoslaw Ryblewski, Michael Strickland

We derive the form of the viscous corrections to the phase-space distribution function due to the bulk viscous pressure and shear stress tensor using the iterative Chapman-Enskog m…

nucl-th201417 cited

Relaxation-time approximation and relativistic third-order viscous hydrodynamics from kinetic theory

Amaresh Jaiswal

Using the iterative solution of Boltzmann equation in the relaxation-time approximation, the derivation of a third-order evolution equation for shear stress tensor is presented. To…