We investigate the population of bright satellites (M∗≥105M⊙) of haloes of mass comparable to that of the Milky Way in cosmological simulations in which the dark matter (DM) is either cold, warm, or self-interacting (CDM, WDM, and SIDM, respectively). The nature of the DM gives rise to differences in the abundance and structural properties of field haloes. In WDM, the main feature is a reduction in the total number of galaxies that form, reflecting a suppression of low-mass DM haloes and lower galaxy formation efficiency compared to CDM. For SIDM, the changes are structural, restricted to the central regions of haloes and dependent on the assumed self-interaction cross-section. We also consider different baryonic subgrid physics models fo...
Milky Way (MW) satellites reside within dark matter (DM) subhalos with a broad distribution of circu...
In the thermal dark matter (DM) paradigm, primordial interactions between DM and Standard Model part...
The nature of the dark matter can affect the collapse time of dark matter haloes, and can therefore ...
We investigate the population of bright satellites (M∗≥105M⊙) of haloes of mass comparable to that...
The spatial distribution of Milky Way (MW) subhaloes provides an important set of observables for te...
In the thermal dark matter (DM) paradigm, primordial interactions between DM and Standard Model part...
We investigate the formation and evolution of satellite galaxies using smoothed particle hydrodynami...
The satellite galaxies of the Milky Way (MW) are effective probes of the underlying dark matter (DM)...
The cold dark matter (CDM) model faces persistent challenges on small scales. In particular, the mod...
We apply a semi-analytic galaxy formation model to two high-resolution cosmological N-body simulatio...
In the thermal dark matter (DM) paradigm, primordial interactions between DM and Standard Model part...
In the thermal dark matter (DM) paradigm, primordial interactions between DM and Standard Model part...
We use the Cluster-EAGLE (C-EAGLE) hydrodynamical simulations to investigate the effects of self-int...
N-body dark matter simulations of structure formation in the Λ cold dark matter (ΛCDM) model predict...
The spatial distribution of Milky Way (MW) subhaloes provides an important set of observables for te...
Milky Way (MW) satellites reside within dark matter (DM) subhalos with a broad distribution of circu...
In the thermal dark matter (DM) paradigm, primordial interactions between DM and Standard Model part...
The nature of the dark matter can affect the collapse time of dark matter haloes, and can therefore ...
We investigate the population of bright satellites (M∗≥105M⊙) of haloes of mass comparable to that...
The spatial distribution of Milky Way (MW) subhaloes provides an important set of observables for te...
In the thermal dark matter (DM) paradigm, primordial interactions between DM and Standard Model part...
We investigate the formation and evolution of satellite galaxies using smoothed particle hydrodynami...
The satellite galaxies of the Milky Way (MW) are effective probes of the underlying dark matter (DM)...
The cold dark matter (CDM) model faces persistent challenges on small scales. In particular, the mod...
We apply a semi-analytic galaxy formation model to two high-resolution cosmological N-body simulatio...
In the thermal dark matter (DM) paradigm, primordial interactions between DM and Standard Model part...
In the thermal dark matter (DM) paradigm, primordial interactions between DM and Standard Model part...
We use the Cluster-EAGLE (C-EAGLE) hydrodynamical simulations to investigate the effects of self-int...
N-body dark matter simulations of structure formation in the Λ cold dark matter (ΛCDM) model predict...
The spatial distribution of Milky Way (MW) subhaloes provides an important set of observables for te...
Milky Way (MW) satellites reside within dark matter (DM) subhalos with a broad distribution of circu...
In the thermal dark matter (DM) paradigm, primordial interactions between DM and Standard Model part...
The nature of the dark matter can affect the collapse time of dark matter haloes, and can therefore ...