International audienceAt high redshift, the cosmic web is widely expected to have a significant impact on the morphologies, dynamics, and star formation rates of the galaxies embedded within it, underscoring the need for a comprehensive study of the properties of such a filamentary network. With this goal in mind, we perform an analysis of high-z gas and dark matter (DM) filaments around a Milky Way-like progenitor simulated with the RAMSES adaptive mesh refinement (AMR) code from cosmic scales (~1 Mpc) down to the virial radius of its DM halo host (~20 kpc at z = 4). Radial density profiles of both gas and DM filaments are found to have the same functional form, namely a plummer-like profile modified to take into account the wall within wh...
Using a new parallel algorithm implemented within the VisIt framework, we analysed large cosmologica...
An Adaptive Mesh Refinement cosmological resimulation is analyzed in order to test whether filamenta...
International audienceUpcoming wide-field surveys are well suited to studying the growth of galaxy c...
International audienceWe present the study of gas phases around cosmic-web filaments detected in the...
We present the study of gas phases around cosmic-web filaments detected in the TNG300-1 hydro-dynami...
We present a comprehensive study of the distribution of matter around different populations of large...
We present a comprehensive study of the distribution of matter around different populations of large...
In this paper, we study the filamentary structures and the galaxy alignment along filaments at redsh...
International audienceWe present a statistical study of the filamentary structures of the cosmic web...
International audienceThe strikingly anisotropic large-scale distribution of matter made of an exten...
With a hydrodynamical simulation using a simple galaxy formation model without taking into account f...
Despite containing about a half of the total matter in the Universe, at most wavelengths the filamen...
The role played by large-scale structures in galaxy evolution is not very well understood yet. In th...
We present a novel method for identifying cosmic web filaments using the IllustrisTNG (TNG100) cosmo...
We use a high-resolution zoom-in hydrodynamical simulation to investigate the impact of filaments on...
Using a new parallel algorithm implemented within the VisIt framework, we analysed large cosmologica...
An Adaptive Mesh Refinement cosmological resimulation is analyzed in order to test whether filamenta...
International audienceUpcoming wide-field surveys are well suited to studying the growth of galaxy c...
International audienceWe present the study of gas phases around cosmic-web filaments detected in the...
We present the study of gas phases around cosmic-web filaments detected in the TNG300-1 hydro-dynami...
We present a comprehensive study of the distribution of matter around different populations of large...
We present a comprehensive study of the distribution of matter around different populations of large...
In this paper, we study the filamentary structures and the galaxy alignment along filaments at redsh...
International audienceWe present a statistical study of the filamentary structures of the cosmic web...
International audienceThe strikingly anisotropic large-scale distribution of matter made of an exten...
With a hydrodynamical simulation using a simple galaxy formation model without taking into account f...
Despite containing about a half of the total matter in the Universe, at most wavelengths the filamen...
The role played by large-scale structures in galaxy evolution is not very well understood yet. In th...
We present a novel method for identifying cosmic web filaments using the IllustrisTNG (TNG100) cosmo...
We use a high-resolution zoom-in hydrodynamical simulation to investigate the impact of filaments on...
Using a new parallel algorithm implemented within the VisIt framework, we analysed large cosmologica...
An Adaptive Mesh Refinement cosmological resimulation is analyzed in order to test whether filamenta...
International audienceUpcoming wide-field surveys are well suited to studying the growth of galaxy c...