We present mg-glam, a code developed for the very fast production of full N-body cosmological simulations in modified gravity (MG) models. We describe the implementation, numerical tests and first results of a large suite of cosmological simulations for two broad classes of MG models with derivative coupling terms — the Vainshtein- and Kmouflage-type models — which respectively features the Vainshtein and Kmouflage screening mechanism. Derived from the parallel particle-mesh code glam, mg-glam incorporates an efficient multigrid relaxation technique to solve the characteristic nonlinear partial differential equations of these models. For Kmouflage, we have proposed a new algorithm for the relaxation solver, and run the first simulations of ...
International audienceAccurate predictions for the nonlinear matter power spectrum are needed to con...
We present an algorithm for quickly generating multiple realizations of N-body simulations to be use...
This paper presents a fast, economical particle-multiple-mesh N-body code optimized for large-N mode...
We present mg-glam, a code developed for the very fast production of full N-body cosmological simula...
We present MG-GLAM, a code developed for the very fast production of full $N$-body cosmological simu...
We present mg-glam, a code developed for the very fast production of full N-body cosmological simula...
We present a new massively parallel code for N-body and cosmological hydrodynamical simulations ...
We present \textsc{MG-GLAM}, a code developed for the very fast production of full $N$-body cosmolog...
We introduce a new code, ECOSMOG, to run N-body simulations for a wide class of modified gravity and...
We introduce and demonstrate the power of a method to speed up current iterative techniques for N-bo...
International audienceWe compare N-body simulations of isolated galaxies performed in both framework...
We introduce a new code, ECOSMOG, to run N-body simulations for a wide class of modified gravity and...
Accurate predictions for the nonlinear matter power spectrum are needed to confront theory with obse...
Self-consistent N-body simulations of modified gravity models are a key ingredient to obtain rigorou...
International audienceAccurate predictions for the nonlinear matter power spectrum are needed to con...
We present an algorithm for quickly generating multiple realizations of N-body simulations to be use...
This paper presents a fast, economical particle-multiple-mesh N-body code optimized for large-N mode...
We present mg-glam, a code developed for the very fast production of full N-body cosmological simula...
We present MG-GLAM, a code developed for the very fast production of full $N$-body cosmological simu...
We present mg-glam, a code developed for the very fast production of full N-body cosmological simula...
We present a new massively parallel code for N-body and cosmological hydrodynamical simulations ...
We present \textsc{MG-GLAM}, a code developed for the very fast production of full $N$-body cosmolog...
We introduce a new code, ECOSMOG, to run N-body simulations for a wide class of modified gravity and...
We introduce and demonstrate the power of a method to speed up current iterative techniques for N-bo...
International audienceWe compare N-body simulations of isolated galaxies performed in both framework...
We introduce a new code, ECOSMOG, to run N-body simulations for a wide class of modified gravity and...
Accurate predictions for the nonlinear matter power spectrum are needed to confront theory with obse...
Self-consistent N-body simulations of modified gravity models are a key ingredient to obtain rigorou...
International audienceAccurate predictions for the nonlinear matter power spectrum are needed to con...
We present an algorithm for quickly generating multiple realizations of N-body simulations to be use...
This paper presents a fast, economical particle-multiple-mesh N-body code optimized for large-N mode...