Relativistic kinetic theory is ubiquitous to several fields of modern physics, finding application at large scales in systems in astrophysical contexts, all of the way down to subnuclear scales and into the realm of quark–gluon plasmas. This motivates the quest for powerful and efficient computational methods that are able to accurately study fluid dynamics in the relativistic regime as well as the transition to beyond hydrodynamics—in principle all of the way down to ballistic regimes. We present a family of relativistic lattice kinetic schemes for the efficient simulation of relativistic flows in both strongly (fluid) and weakly (rarefied gas) interacting regimes. The method can deal with both massless and massive particles, thereby encom...
One of the most crucial steps for a fast ignition scenario is the energy deposition into the highly ...
Relativistic hydrodynamics has been the tool of choice to simulate the dynamics of the quark-gluon p...
Rayleigh-Taylor (RT) instabilities are prevalent in many physical regimes ranging from astrophysical...
Relativistic kinetic theory is ubiquitous to several fields of modern physics, finding application a...
Relativistic kinetic theory is ubiquitous to several fields of modern physics, finding application a...
Relativistic kinetic theory is ubiquitous to several fields of modern physics, finding application a...
We present a new family of relativistic lattice kinetic schemes for the efficient simulation of rela...
In this paper, we review recent progress in relativistic lattice kinetic theory and its applications...
Relativistic kinetic theory has widespread application in astrophysics and cosmology. The interest h...
In this paper, we review recent progress in relativistic lattice kinetic theory and its applications...
Plasma astrophysics deals with collective plasma processes in astrophysical scenarios. As observatio...
Relativistic hydrodynamics is a very successful theoretical framework to describe the dynamics of ma...
We use a macroscopic description of a system of relativistic particles based on adding a nonequilibr...
We present a systematic account of recent developments of the relativistic Lattice Boltzmann method ...
The past decade has seen unprecedented developments in the understanding of relativistic fluid dynam...
One of the most crucial steps for a fast ignition scenario is the energy deposition into the highly ...
Relativistic hydrodynamics has been the tool of choice to simulate the dynamics of the quark-gluon p...
Rayleigh-Taylor (RT) instabilities are prevalent in many physical regimes ranging from astrophysical...
Relativistic kinetic theory is ubiquitous to several fields of modern physics, finding application a...
Relativistic kinetic theory is ubiquitous to several fields of modern physics, finding application a...
Relativistic kinetic theory is ubiquitous to several fields of modern physics, finding application a...
We present a new family of relativistic lattice kinetic schemes for the efficient simulation of rela...
In this paper, we review recent progress in relativistic lattice kinetic theory and its applications...
Relativistic kinetic theory has widespread application in astrophysics and cosmology. The interest h...
In this paper, we review recent progress in relativistic lattice kinetic theory and its applications...
Plasma astrophysics deals with collective plasma processes in astrophysical scenarios. As observatio...
Relativistic hydrodynamics is a very successful theoretical framework to describe the dynamics of ma...
We use a macroscopic description of a system of relativistic particles based on adding a nonequilibr...
We present a systematic account of recent developments of the relativistic Lattice Boltzmann method ...
The past decade has seen unprecedented developments in the understanding of relativistic fluid dynam...
One of the most crucial steps for a fast ignition scenario is the energy deposition into the highly ...
Relativistic hydrodynamics has been the tool of choice to simulate the dynamics of the quark-gluon p...
Rayleigh-Taylor (RT) instabilities are prevalent in many physical regimes ranging from astrophysical...