International audienceWe present a new implementation of the tracer particles algorithm based on a Monte Carlo approach for the Eulerian adaptive mesh refinement code RAMSES. The purpose of tracer particles is to keep track of where fluid elements originate in Eulerian mesh codes, so as to follow their Lagrangian trajectories and re-processing history. We provide a comparison to the more commonly used velocity-based tracer particles, and show that the Monte Carlo approach reproduces the gas distribution much more accurately. We present a detailed statistical analysis of the properties of the distribution of tracer particles in the gas and report that it follows a Poisson law. We extend these Monte Carlo gas tracer particles to tracer partic...
We implemented sink particles in the Adaptive Mesh Refinement (AMR) code FLASH to model the gravitat...
We examine how three fundamentally different numerical hydrodynamics codes follow the evolution of a...
An adaptive multi grid approach to simulating the formation of structure from collisionless dark mat...
We present a new implementation of the tracer particles algorithm based on a Monte Carlo approach fo...
We present two numerical schemes for passive tracer particles in the hydrodynamical moving-mesh code...
This thesis describes the development, benchmarking and application of a non-LTE, co-moving frame Mo...
A new N-body and hydrodynamical code, called RAMSES, is presented. It has been designed to study str...
We present a new sink particle algorithm developed for the adaptive mesh refinement code RAMSES. Our...
We present a new sink particle algorithm developed for the Adaptive Mesh Refinement code ramses. Our...
A new N-body and hydrodynamical code, called RAMSES, is presented. It has been designed to study str...
We investigate the nature of gas accretion onto haloes and galaxies at z = 2 us-ing cosmological hyd...
We present a new sink particle algorithm developed for the adaptive mesh refinement code ramses. Our...
We introduce a new computational method for embedding Lagrangian sink particles into an Eulerian cal...
International audienceWe use the photon flux and absorption tracer algorithm presented in Katz et al...
In this paper, we implement the Adaptive Moving Mesh method (AMM) to the solution of initial value p...
We implemented sink particles in the Adaptive Mesh Refinement (AMR) code FLASH to model the gravitat...
We examine how three fundamentally different numerical hydrodynamics codes follow the evolution of a...
An adaptive multi grid approach to simulating the formation of structure from collisionless dark mat...
We present a new implementation of the tracer particles algorithm based on a Monte Carlo approach fo...
We present two numerical schemes for passive tracer particles in the hydrodynamical moving-mesh code...
This thesis describes the development, benchmarking and application of a non-LTE, co-moving frame Mo...
A new N-body and hydrodynamical code, called RAMSES, is presented. It has been designed to study str...
We present a new sink particle algorithm developed for the adaptive mesh refinement code RAMSES. Our...
We present a new sink particle algorithm developed for the Adaptive Mesh Refinement code ramses. Our...
A new N-body and hydrodynamical code, called RAMSES, is presented. It has been designed to study str...
We investigate the nature of gas accretion onto haloes and galaxies at z = 2 us-ing cosmological hyd...
We present a new sink particle algorithm developed for the adaptive mesh refinement code ramses. Our...
We introduce a new computational method for embedding Lagrangian sink particles into an Eulerian cal...
International audienceWe use the photon flux and absorption tracer algorithm presented in Katz et al...
In this paper, we implement the Adaptive Moving Mesh method (AMM) to the solution of initial value p...
We implemented sink particles in the Adaptive Mesh Refinement (AMR) code FLASH to model the gravitat...
We examine how three fundamentally different numerical hydrodynamics codes follow the evolution of a...
An adaptive multi grid approach to simulating the formation of structure from collisionless dark mat...