We study the one-dimensional boost-invariant Boltzmann equation in the relaxation-time approximation using special moments of the distribution function for a system with a finite particle mass. The infinite hierarchy of moments can be truncated by keeping only the three lowest moments that correspond to the three independent components of the energy-momentum tensor. We show that such a three-moment truncation reproduces accurately the exact solution of the kinetic equation after a simple renormalization that takes into account the effects of the neglected higher moments. We derive second-order Israel-Stewart hydrodynamic equations from the three-moment equations, and show that, for most physically relevant initial conditions, these equation...
We use quasiparticle anisotropic hydrodynamics to study the non-conformal and non-extensive dynamics...
We investigate the far-from-equilibrium behavior of the Boltzmann equation for a gas of massless sca...
The dynamical scaling behavior of hydrodynamic and non-hydrodynamic moments of the distribution func...
We study the one-dimensional boost-invariant Boltzmann equation in the relaxation-time approximation...
International audienceWe study the one-dimensional boost-invariant Boltzmann equation in the relaxat...
International audienceWe study the one-dimensional boost-invariant Boltzmann equation in the relaxat...
We study the one-dimensional boost-invariant Boltzmann equation in the relaxation-time approximation...
International audienceWe use a set of simple angular moments to solve the Boltzmann equation in the ...
International audienceWe use a set of simple angular moments to solve the Boltzmann equation in the ...
International audienceWe use a set of simple angular moments to solve the Boltzmann equation in the ...
International audienceWe use a set of simple angular moments to solve the Boltzmann equation in the ...
International audienceWe use a set of simple angular moments to solve the Boltzmann equation in the ...
I consider a simple set of equations that govern the expansion of boost-invariant plasmas of massles...
A novel description of kinetic theory dynamics is proposed in terms of resummed moments that embed i...
A novel description of kinetic theory dynamics is proposed in terms of resummed moments that embed i...
We use quasiparticle anisotropic hydrodynamics to study the non-conformal and non-extensive dynamics...
We investigate the far-from-equilibrium behavior of the Boltzmann equation for a gas of massless sca...
The dynamical scaling behavior of hydrodynamic and non-hydrodynamic moments of the distribution func...
We study the one-dimensional boost-invariant Boltzmann equation in the relaxation-time approximation...
International audienceWe study the one-dimensional boost-invariant Boltzmann equation in the relaxat...
International audienceWe study the one-dimensional boost-invariant Boltzmann equation in the relaxat...
We study the one-dimensional boost-invariant Boltzmann equation in the relaxation-time approximation...
International audienceWe use a set of simple angular moments to solve the Boltzmann equation in the ...
International audienceWe use a set of simple angular moments to solve the Boltzmann equation in the ...
International audienceWe use a set of simple angular moments to solve the Boltzmann equation in the ...
International audienceWe use a set of simple angular moments to solve the Boltzmann equation in the ...
International audienceWe use a set of simple angular moments to solve the Boltzmann equation in the ...
I consider a simple set of equations that govern the expansion of boost-invariant plasmas of massles...
A novel description of kinetic theory dynamics is proposed in terms of resummed moments that embed i...
A novel description of kinetic theory dynamics is proposed in terms of resummed moments that embed i...
We use quasiparticle anisotropic hydrodynamics to study the non-conformal and non-extensive dynamics...
We investigate the far-from-equilibrium behavior of the Boltzmann equation for a gas of massless sca...
The dynamical scaling behavior of hydrodynamic and non-hydrodynamic moments of the distribution func...