We study the formation of stellar haloes in three Milky Way-mass galaxies using cosmological smoothed particle hydrodynamics simulations, focusing on the subset of halo stars that form in situ, as opposed to those accreted from satellites. In situ stars in our simulations dominate the stellar halo out to 20 kpc and account for 30–40 per cent of its total mass. We separate in situ halo stars into three straightforward, physically distinct categories according to their origin: stars scattered from the disc of the main galaxy (‘heated disc’), stars formed from gas smoothly accreted on to the halo (‘smooth’ gas) and stars formed in streams of gas stripped from infalling satellites (‘stripped’ gas). We find that most belong to the stripped gas c...
We use a series of high-resolution simulations of a 'Milky Way' halo coupled to semi-analytic method...
We characterize the substructure in the simulated stellar halos of Cooper et al. which were formed b...
We characterize the substructure in the simulated stellar halos of Cooper et al. which were formed b...
We investigate the formation of the stellar halos of four simulated disk galaxies using high-resolut...
We investigate the formation of the stellar halos of four simulated disk galaxies using high-resolut...
We introduce the Assembly of high-ResoluTion Eagle-simulations of MIlky Way-type galaxieS (ARTEMIS) ...
We investigate the formation of the stellar halos of four simulated disk galaxies using high-resolut...
We use the Galaxies-Intergalactic Medium Interaction Calculation (gimic) suite of cosmological hydro...
We use the Galaxies–Intergalactic Medium Interaction Calculation (GIMIC) suite of cosmological hydro...
We use the Galaxies–Intergalactic Medium Interaction Calculation (GIMIC) suite of cosmological hydro...
We introduce the ARTEMIS simulations, a new set of 42 zoomed-in, high-resolution (baryon particle ma...
We characterize the substructure in the simulated stellar halos of Cooper et al. which were formed b...
We use a series of high-resolution simulations of a 'Milky Way' halo coupled to semi-analytic method...
We use a series of high-resolution simulations of a 'Milky Way' halo coupled to semi-analytic method...
We characterize the substructure in the simulated stellar halos of Cooper et al. which were formed b...
We use a series of high-resolution simulations of a 'Milky Way' halo coupled to semi-analytic method...
We characterize the substructure in the simulated stellar halos of Cooper et al. which were formed b...
We characterize the substructure in the simulated stellar halos of Cooper et al. which were formed b...
We investigate the formation of the stellar halos of four simulated disk galaxies using high-resolut...
We investigate the formation of the stellar halos of four simulated disk galaxies using high-resolut...
We introduce the Assembly of high-ResoluTion Eagle-simulations of MIlky Way-type galaxieS (ARTEMIS) ...
We investigate the formation of the stellar halos of four simulated disk galaxies using high-resolut...
We use the Galaxies-Intergalactic Medium Interaction Calculation (gimic) suite of cosmological hydro...
We use the Galaxies–Intergalactic Medium Interaction Calculation (GIMIC) suite of cosmological hydro...
We use the Galaxies–Intergalactic Medium Interaction Calculation (GIMIC) suite of cosmological hydro...
We introduce the ARTEMIS simulations, a new set of 42 zoomed-in, high-resolution (baryon particle ma...
We characterize the substructure in the simulated stellar halos of Cooper et al. which were formed b...
We use a series of high-resolution simulations of a 'Milky Way' halo coupled to semi-analytic method...
We use a series of high-resolution simulations of a 'Milky Way' halo coupled to semi-analytic method...
We characterize the substructure in the simulated stellar halos of Cooper et al. which were formed b...
We use a series of high-resolution simulations of a 'Milky Way' halo coupled to semi-analytic method...
We characterize the substructure in the simulated stellar halos of Cooper et al. which were formed b...
We characterize the substructure in the simulated stellar halos of Cooper et al. which were formed b...