(Abridged) The hierarchical formation scenario for the stellar halo requires the accretion and disruption of dwarf galaxies, yet low-metallicity halo stars are enriched in alpha-elements compared to similar, low-metallicity stars in dwarf spheroidal (dSph) galaxies. We address this primary challenge for the hierarchical formation scenario for the stellar halo by combining chemical evolution modelling with cosmologically-motivated mass accretion histories for the Milky Way dark halo and its satellites. We demonstrate that stellar halo and dwarf galaxy abundance patterns can be explained naturally within the LCDM framework. Our solution relies fundamentally on the LCDM model prediction that the majority of the stars in the stellar halo were f...
Using analytic arguments and a suite of very high resolution (10^3Msun per particle) cosmological hy...
We use cosmological hydrodynamical simulations of the APOSTLE project along with high-quality rotati...
We present a data-driven approach to understand the star formation in dark matter halos over cosmic ...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society....
We present a cosmologically motivated model for the hierachical formation of the stellar halo which ...
We study the mass spectrum of destroyed dwarfs that contribute to the accreted stellar mass of Milky...
We develop an empirical approach to infer the star formation rate in dark matter haloes from the gal...
We present six simulations of galactic stellar haloes formed by the tidal disruption of accreted dwa...
We develop an empirical approach to infer the star formation rate in dark matter haloes from the gal...
The concordance cosmological model based on cold dark matter makes definitive predictions for the gr...
We study the distribution of cold dark matter (CDM) in cosmological simulations from the FIRE (Feedb...
Recent observations have revealed that high surface brightness, metal-rich debris is present over la...
Using analytic arguments and a suite of very high resolution (∼103 M⊙ per particle) cosmological hyd...
We use N-body cosmological simulations and empirical galaxy models to study the merger history of dw...
We use magnetohydrodynamical simulations of Milky Way-mass haloes from the Auriga project to investi...
Using analytic arguments and a suite of very high resolution (10^3Msun per particle) cosmological hy...
We use cosmological hydrodynamical simulations of the APOSTLE project along with high-quality rotati...
We present a data-driven approach to understand the star formation in dark matter halos over cosmic ...
This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society....
We present a cosmologically motivated model for the hierachical formation of the stellar halo which ...
We study the mass spectrum of destroyed dwarfs that contribute to the accreted stellar mass of Milky...
We develop an empirical approach to infer the star formation rate in dark matter haloes from the gal...
We present six simulations of galactic stellar haloes formed by the tidal disruption of accreted dwa...
We develop an empirical approach to infer the star formation rate in dark matter haloes from the gal...
The concordance cosmological model based on cold dark matter makes definitive predictions for the gr...
We study the distribution of cold dark matter (CDM) in cosmological simulations from the FIRE (Feedb...
Recent observations have revealed that high surface brightness, metal-rich debris is present over la...
Using analytic arguments and a suite of very high resolution (∼103 M⊙ per particle) cosmological hyd...
We use N-body cosmological simulations and empirical galaxy models to study the merger history of dw...
We use magnetohydrodynamical simulations of Milky Way-mass haloes from the Auriga project to investi...
Using analytic arguments and a suite of very high resolution (10^3Msun per particle) cosmological hy...
We use cosmological hydrodynamical simulations of the APOSTLE project along with high-quality rotati...
We present a data-driven approach to understand the star formation in dark matter halos over cosmic ...