Among the most important goals in cosmology is detecting and quantifying small (M_(halo)≃10^(6−9) M⊙) dark matter (DM) subhaloes. Current probes around the Milky Way (MW) are most sensitive to such substructure within ∼20 kpc of the halo centre, where the galaxy contributes significantly to the potential. We explore the effects of baryons on subhalo populations in ΛCDM using cosmological zoom-in baryonic simulations of MW-mass haloes from the Latte simulation suite, part of the Feedback In Realistic Environments (FIRE) project. Specifically, we compare simulations of the same two haloes run using (1) DM-only (DMO), (2) full baryonic physics and (3) DM with an embedded disc potential grown to match the FIRE simulation. Relative to baryonic s...
The predicted abundance and properties of the low-mass substructures embedded inside larger dark mat...
N-body simulations make unambiguous predictions for the abundance of substructures within dark matte...
N-body simulations make unambiguous predictions for the abundance of substructures within dark matte...
Among the most important goals in cosmology is detecting and quantifying small (M_(halo)≃10^(6−9) M⊙...
Among the most important goals in cosmology is detecting and quantifying small (Mhalo ≃ 106-9 M⊙) da...
Among the most important goals in cosmology is detecting and quantifying small (Mhalo ≃ 106-9 M⊙) da...
We identify subhalos in dark matter–only (DMO) zoom-in simulations that are likely to be disrupted d...
We identify subhalos in dark matter–only (DMO) zoom-in simulations that are likely to be disrupted d...
We identify subhalos in dark matter–only (DMO) zoom-in simulations that are likely to be disrupted d...
The predicted abundance and properties of the low-mass substructures embedded inside larger dark mat...
The predicted abundance and properties of the low-mass substructures embedded inside larger dark mat...
We study the substructure population of Milky Way (MW)-mass haloes in the Λ cold dark matter (ΛCDM) ...
We study the impact of baryons on the distribution of dark matter in a Milky Way-sized halo by compa...
We study the impact of baryons on the distribution of dark matter in a Milky Way-sized halo by compa...
We study the impact of baryons on the distribution of dark matter in a Milky Way-sized halo by compa...
The predicted abundance and properties of the low-mass substructures embedded inside larger dark mat...
N-body simulations make unambiguous predictions for the abundance of substructures within dark matte...
N-body simulations make unambiguous predictions for the abundance of substructures within dark matte...
Among the most important goals in cosmology is detecting and quantifying small (M_(halo)≃10^(6−9) M⊙...
Among the most important goals in cosmology is detecting and quantifying small (Mhalo ≃ 106-9 M⊙) da...
Among the most important goals in cosmology is detecting and quantifying small (Mhalo ≃ 106-9 M⊙) da...
We identify subhalos in dark matter–only (DMO) zoom-in simulations that are likely to be disrupted d...
We identify subhalos in dark matter–only (DMO) zoom-in simulations that are likely to be disrupted d...
We identify subhalos in dark matter–only (DMO) zoom-in simulations that are likely to be disrupted d...
The predicted abundance and properties of the low-mass substructures embedded inside larger dark mat...
The predicted abundance and properties of the low-mass substructures embedded inside larger dark mat...
We study the substructure population of Milky Way (MW)-mass haloes in the Λ cold dark matter (ΛCDM) ...
We study the impact of baryons on the distribution of dark matter in a Milky Way-sized halo by compa...
We study the impact of baryons on the distribution of dark matter in a Milky Way-sized halo by compa...
We study the impact of baryons on the distribution of dark matter in a Milky Way-sized halo by compa...
The predicted abundance and properties of the low-mass substructures embedded inside larger dark mat...
N-body simulations make unambiguous predictions for the abundance of substructures within dark matte...
N-body simulations make unambiguous predictions for the abundance of substructures within dark matte...