We present a ray tracing code to compute integrated cosmological observables on the fly in AMR N-body simulations. Unlike conventional ray tracing techniques, our code takes full advantage of the time and spatial resolution attained by the N-body simulation by computing the integrals along the line of sight on a cell-by-cell basis through the AMR simulation grid. Moroever, since it runs on the fly in the N-body run, our code can produce maps of the desired observables without storing large (or any) amounts of data for post-processing. We implemented our routines in the RAMSES N-body code and tested the implementation using an example of weak lensing simulation. We analyse basic statistics of lensing convergence maps and find good agreement ...
International audienceContext. General relativistic effects on the clustering of matter in the Unive...
A number of codes for general-relativistic simulations of cosmological structure formation have been...
International audienceGeneral Relativistic effects on the clustering of matter in the universe provi...
We introduce Magrathea-Pathfinder, a relativistic ray-tracing framework that can reconstruct the pas...
International audienceWe introduce MAGRATHEA-PATHFINDER, a relativistic ray-tracing framework that c...
We propose a new ray-tracing algorithm to measure the weak-lensing shear and convergence fields dire...
We present GRAMSES, a new pipeline for nonlinear cosmological N-body simulations in General Relativi...
A new N-body and hydrodynamical code, called RAMSES, is presented. It has been designed to study str...
A method for ray-tracing through n-body simulations has been recently proposed. It is based on a per...
A new N-body and hydrodynamical code, called RAMSES, is presented. It has been designed to study str...
Published VersionMaps of the Rees–Sciama (RS) effect are simulated using the parallel N-body code, h...
This directory contains all the necessary data, codes, and notebooks to reproduce the results of the...
We study cosmic shear statistics using the ray-tracing simulation combined with a set of large $N$-b...
Small maps of the Rees-Sciama (RS) effect are simulated by using an appropriate N-body code and a ce...
We present the UNIT N-body cosmological simulations project, designed to provide precise predictions...
International audienceContext. General relativistic effects on the clustering of matter in the Unive...
A number of codes for general-relativistic simulations of cosmological structure formation have been...
International audienceGeneral Relativistic effects on the clustering of matter in the universe provi...
We introduce Magrathea-Pathfinder, a relativistic ray-tracing framework that can reconstruct the pas...
International audienceWe introduce MAGRATHEA-PATHFINDER, a relativistic ray-tracing framework that c...
We propose a new ray-tracing algorithm to measure the weak-lensing shear and convergence fields dire...
We present GRAMSES, a new pipeline for nonlinear cosmological N-body simulations in General Relativi...
A new N-body and hydrodynamical code, called RAMSES, is presented. It has been designed to study str...
A method for ray-tracing through n-body simulations has been recently proposed. It is based on a per...
A new N-body and hydrodynamical code, called RAMSES, is presented. It has been designed to study str...
Published VersionMaps of the Rees–Sciama (RS) effect are simulated using the parallel N-body code, h...
This directory contains all the necessary data, codes, and notebooks to reproduce the results of the...
We study cosmic shear statistics using the ray-tracing simulation combined with a set of large $N$-b...
Small maps of the Rees-Sciama (RS) effect are simulated by using an appropriate N-body code and a ce...
We present the UNIT N-body cosmological simulations project, designed to provide precise predictions...
International audienceContext. General relativistic effects on the clustering of matter in the Unive...
A number of codes for general-relativistic simulations of cosmological structure formation have been...
International audienceGeneral Relativistic effects on the clustering of matter in the universe provi...