AbstractWe derive generic relativistic hydrodynamical equations with dissipative effects from the underlying Boltzmann equation in a mechanical and systematic way on the basis of so-called the renormalization-group method. A macroscopic frame vector is introduced to specify the frame on which the macroscopic dynamics is described. Our method is so mechanical with only few ansatz that our method gives a microscopic foundation of the available hydrodynamical equations, and also can be applied to make a reduction of the kinetic equations other than the simple Boltzmann equation
In many radiation hydrodynamics problems of astrophysical interest, the fluid moves at extremely hig...
Israel-Stewart theory is a causal, stable formulation of relativistic dissipative fluid dynamics. Th...
On the basis of statistical description the movement of relativistic particles without external forc...
We derive generic relativistic hydrodynamical equations with dissipative effects from the underlying...
We derive first-order relativistic dissipative hydrodynamic equations from the rela-tivistic Boltzma...
We review our work on the application of the renormalization-group method to obtain first- and secon...
We have first given a comprehensive review of the renormalization group(RG) method for global and as...
We first give a comprehensive review of the renormalization group method for global and asymptotic a...
We derive the equations of second order dissipative fluid dynamics from the relativistic Boltzmann e...
We present a new variational framework for dissipative general relativistic fluid dynamics. The mode...
AbstractStarting with the relativistic Boltzmann equation where the collision term is generalized to...
In this paper, we describe classical problems of the relativistic hydrodynamics with dissipations an...
Background: Experimental data from heavy-ion experiments at RHIC-BNL and LHC-CERN are quantitatively...
The equations governing dissipative relativistic hydrodynamics are formulated within the 3+1 approac...
The covariant Boltzmann equation for a relativistic gas mixture is used to formulate a theory of rel...
In many radiation hydrodynamics problems of astrophysical interest, the fluid moves at extremely hig...
Israel-Stewart theory is a causal, stable formulation of relativistic dissipative fluid dynamics. Th...
On the basis of statistical description the movement of relativistic particles without external forc...
We derive generic relativistic hydrodynamical equations with dissipative effects from the underlying...
We derive first-order relativistic dissipative hydrodynamic equations from the rela-tivistic Boltzma...
We review our work on the application of the renormalization-group method to obtain first- and secon...
We have first given a comprehensive review of the renormalization group(RG) method for global and as...
We first give a comprehensive review of the renormalization group method for global and asymptotic a...
We derive the equations of second order dissipative fluid dynamics from the relativistic Boltzmann e...
We present a new variational framework for dissipative general relativistic fluid dynamics. The mode...
AbstractStarting with the relativistic Boltzmann equation where the collision term is generalized to...
In this paper, we describe classical problems of the relativistic hydrodynamics with dissipations an...
Background: Experimental data from heavy-ion experiments at RHIC-BNL and LHC-CERN are quantitatively...
The equations governing dissipative relativistic hydrodynamics are formulated within the 3+1 approac...
The covariant Boltzmann equation for a relativistic gas mixture is used to formulate a theory of rel...
In many radiation hydrodynamics problems of astrophysical interest, the fluid moves at extremely hig...
Israel-Stewart theory is a causal, stable formulation of relativistic dissipative fluid dynamics. Th...
On the basis of statistical description the movement of relativistic particles without external forc...