In this paper, we exploit a large suite of ENZO cosmological magneto-hydrodynamical simulations adopting uniform mesh resolution, to investigate the properties of cosmic filaments under different baryonic physics and magnetogenesis scenarios. We exploit an isovolume-based algorithm to identify filaments and determine their attributes from the continuous distribution of gas mass density in the simulated volumes. The global (e.g. mass, size, mean temperature and magnetic field strength, and enclosed baryon fraction) and internal (e.g. density, temperature, velocity, and magnetic field profiles) properties of filaments in our volume are calculated across almost four orders of magnitude in mass. The inclusion of variations in non-gravitational ...
none12si©2019 The Author(s)Published by Oxford University Press on behalf of the Royal Astronomical ...
none4The amplification of primordial magnetic fields via a small-scale turbulent dynamo during struc...
We use numerical simulations of turbulent cluster-forming regions to study the nature of dense filam...
open2siIn this paper, we exploit a large suite of ENZO cosmological magneto-hydrodynamical simula- t...
Despite containing about a half of the total matter in the Universe, at most wavelengths the filamen...
none4Using a new parallel algorithm implemented within the VisIt framework, we analysed large cosmol...
Context. Numerical simulations predict that a considerable fraction of the missing baryons...
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...
We present the study of gas phases around cosmic-web filaments detected in the TNG300-1 hydro-dynami...
We report on the possibility of studying the proprieties of cosmic diffuse baryons by studying self-...
International audienceWe present the study of gas phases around cosmic-web filaments detected in the...
Cosmic filaments play a crucial role in galaxy evolution, transporting gas from the intergalactic me...
Context.Hydrodynamical simulations indicate that a substantial fraction of baryons in the universe ...
Our standard cosmological Lambda CDM model predicts that both dark and baryonic matter is arranged i...
none12si©2019 The Author(s)Published by Oxford University Press on behalf of the Royal Astronomical ...
none4The amplification of primordial magnetic fields via a small-scale turbulent dynamo during struc...
We use numerical simulations of turbulent cluster-forming regions to study the nature of dense filam...
open2siIn this paper, we exploit a large suite of ENZO cosmological magneto-hydrodynamical simula- t...
Despite containing about a half of the total matter in the Universe, at most wavelengths the filamen...
none4Using a new parallel algorithm implemented within the VisIt framework, we analysed large cosmol...
Context. Numerical simulations predict that a considerable fraction of the missing baryons...
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...
We present the study of gas phases around cosmic-web filaments detected in the TNG300-1 hydro-dynami...
We report on the possibility of studying the proprieties of cosmic diffuse baryons by studying self-...
International audienceWe present the study of gas phases around cosmic-web filaments detected in the...
Cosmic filaments play a crucial role in galaxy evolution, transporting gas from the intergalactic me...
Context.Hydrodynamical simulations indicate that a substantial fraction of baryons in the universe ...
Our standard cosmological Lambda CDM model predicts that both dark and baryonic matter is arranged i...
none12si©2019 The Author(s)Published by Oxford University Press on behalf of the Royal Astronomical ...
none4The amplification of primordial magnetic fields via a small-scale turbulent dynamo during struc...
We use numerical simulations of turbulent cluster-forming regions to study the nature of dense filam...