Abstract. Based on the exact solution of Boltzmann kinetic equation in the relaxation-time approximation, the precision of the two most recent formulations of relativistic second-order non-conformal viscous hydrodynamics (14-moment approximation and causal Chapman-Enskog method), standard Israel-Stewart theory, and anisotropic hydrodynamics framework, in the simple case of one-dimensional Bjorken expansion, is tested. It is demonstrated that the failure of Israel-Stewart theory in reproducing exact solutions of the Boltzmann kinetic equation occurs due to neglecting and/or choosing wrong forms of some of the second-order transport coefficients. In particular, the importance of shear–bulk couplings in the evolution equations for dissipative ...
We derive a first-order, stable and causal, relativistic hydrodynamic theory from the microscopic ki...
We derive first-order relativistic dissipative hydrodynamic equations from the rela-tivistic Boltzma...
AbstractStarting with the relativistic Boltzmann equation where the collision term is generalized to...
AbstractWe investigate the ratios βη≡η/τπ and βζ≡ζ/τΠ, i.e., the ratios of shear, η, and bulk, ζ, vi...
We solve the one-dimensional boost-invariant Boltzmann equation in the relaxation time approximation...
We derive the equations of second order dissipative fluid dynamics from the relativistic Boltzmann e...
A new formulation of second-order viscous hydrodynamics, based on an expansion around a locally anis...
Baier R, Romatschke P, Son DT, Starinets AO, Stephanov MA. Relativistic viscous hydrodynamics, confo...
We study the one-dimensional boost-invariant Boltzmann equation in the relaxation-time approximation...
We review our work on the application of the renormalization-group method to obtain first- and secon...
Development of a new framework for derivation of order-by-order hydrodynamics from Boltzmann equatio...
We exactly solve the relaxation-time approximation Boltzmann equation for a system which is transver...
In Ref.[1-4] we have obtained new hydrodynamic equations beyond a tra-ditional framework of Knudsen ...
We present an analytical derivation of the transport coefficients of a relativistic gas in (2+1) dim...
The evaluation of hydrodynamic transport coefficients in relativistic field theory, and the emergenc...
We derive a first-order, stable and causal, relativistic hydrodynamic theory from the microscopic ki...
We derive first-order relativistic dissipative hydrodynamic equations from the rela-tivistic Boltzma...
AbstractStarting with the relativistic Boltzmann equation where the collision term is generalized to...
AbstractWe investigate the ratios βη≡η/τπ and βζ≡ζ/τΠ, i.e., the ratios of shear, η, and bulk, ζ, vi...
We solve the one-dimensional boost-invariant Boltzmann equation in the relaxation time approximation...
We derive the equations of second order dissipative fluid dynamics from the relativistic Boltzmann e...
A new formulation of second-order viscous hydrodynamics, based on an expansion around a locally anis...
Baier R, Romatschke P, Son DT, Starinets AO, Stephanov MA. Relativistic viscous hydrodynamics, confo...
We study the one-dimensional boost-invariant Boltzmann equation in the relaxation-time approximation...
We review our work on the application of the renormalization-group method to obtain first- and secon...
Development of a new framework for derivation of order-by-order hydrodynamics from Boltzmann equatio...
We exactly solve the relaxation-time approximation Boltzmann equation for a system which is transver...
In Ref.[1-4] we have obtained new hydrodynamic equations beyond a tra-ditional framework of Knudsen ...
We present an analytical derivation of the transport coefficients of a relativistic gas in (2+1) dim...
The evaluation of hydrodynamic transport coefficients in relativistic field theory, and the emergenc...
We derive a first-order, stable and causal, relativistic hydrodynamic theory from the microscopic ki...
We derive first-order relativistic dissipative hydrodynamic equations from the rela-tivistic Boltzma...
AbstractStarting with the relativistic Boltzmann equation where the collision term is generalized to...