We investigate the impact of the existence of a primordial magnetic field on the filter mass, characterizing the minimum baryonic mass that can form in dark matter (DM) haloes. For masses below the filter mass, the baryon content of DM haloes are severely depressed. The filter mass is the mass when the baryon to DM mass ratio in a halo is equal to half the baryon to DM ratio of the Universe. The filter mass has previously been used in semi-analytic calculations of galaxy formation, without taking into account the possible existence of a primordial magnetic field. We examine here its effect on the filter mass. For homogeneous comoving primordial magnetic fields of B(0) similar to 1 or 2 nG and a re-ionization epoch that starts at a redshift ...
We study the implications of primordial magnetic fields for the thermal and ionization history of th...
We use numerical simulations to investigate how the statistical properties of dark matter (DM) haloe...
We explore the ways in which primordial magnetic fields influence the thermal and ionization history...
We investigate the impact of the existence of a primordial magnetic field on the filter mass, charac...
We recently predicted the existence of random primordial magnetic fields (RPMFs) in the form of rand...
Using a set of cosmological hydro-dynamical simulations, we constrained the properties of primordial...
Despite the ever growing observational evidence for the existence of the large scale magnetic fields...
Primordial magnetic fields are often thought to be the early Universe seeds that have bloomed into w...
Magnetic fields of intensities similar to those in our galaxy are also observed in high redshift gal...
We study the distributions of the baryons in massive halos (Mvir > 1013 h−1 M⊙) in the Magneticum su...
Most early Universe scenarios predict negligible magnetic fields on cosmological scales if they are ...
International audienceThe standard cosmological model determined from the accurate cosmic microwave ...
International audienceMagnetic fields appear to be present in essentially all astrophysical environm...
The Experiment to Detect the Global Epoch of reionization Signature (EDGES) collaboration has report...
In this paper we investigate magnetic fields generated in the early Universe. These fields are impor...
We study the implications of primordial magnetic fields for the thermal and ionization history of th...
We use numerical simulations to investigate how the statistical properties of dark matter (DM) haloe...
We explore the ways in which primordial magnetic fields influence the thermal and ionization history...
We investigate the impact of the existence of a primordial magnetic field on the filter mass, charac...
We recently predicted the existence of random primordial magnetic fields (RPMFs) in the form of rand...
Using a set of cosmological hydro-dynamical simulations, we constrained the properties of primordial...
Despite the ever growing observational evidence for the existence of the large scale magnetic fields...
Primordial magnetic fields are often thought to be the early Universe seeds that have bloomed into w...
Magnetic fields of intensities similar to those in our galaxy are also observed in high redshift gal...
We study the distributions of the baryons in massive halos (Mvir > 1013 h−1 M⊙) in the Magneticum su...
Most early Universe scenarios predict negligible magnetic fields on cosmological scales if they are ...
International audienceThe standard cosmological model determined from the accurate cosmic microwave ...
International audienceMagnetic fields appear to be present in essentially all astrophysical environm...
The Experiment to Detect the Global Epoch of reionization Signature (EDGES) collaboration has report...
In this paper we investigate magnetic fields generated in the early Universe. These fields are impor...
We study the implications of primordial magnetic fields for the thermal and ionization history of th...
We use numerical simulations to investigate how the statistical properties of dark matter (DM) haloe...
We explore the ways in which primordial magnetic fields influence the thermal and ionization history...