We present a new and completely general technique for calculating the fine-grained phase-pace structure of dark matter (DM) throughout the Galactic halo. Our goal is to understand this structure on the scales relevant for direct and indirect detection experiments. Our method is based on evaluating the geodesic deviation equation along the trajectories of individual DM particles. It requires no assumptions about the symmetry or stationarity of the halo formation process. In this paper we study general static potentials which exhibit more complex behaviour than the separable potentials studied previously. For ellipsoidal logarithmic potentials with a core, phase mixing is sensitive to the resonance structure, as indicated by the number of ind...
We study predictions for dark matter phase-space structure near the Sun based on high-resolution sim...
Most of the mass content of dark matter haloes is expected to be in the form of tidal debris. The de...
We study the orbital phase space of dark matter (DM) haloes in the AURIGA suite of cosmological hydr...
We present a new and completely general technique for calculating the fine-grained phase-pace struct...
We present a new and completely general technique for calculating the fine-grained phase-pace struct...
We present a new and completely general technique for calculating the fine-grained phase-pace struct...
We present a new and completely general technique for calculating the fine-grained phase-pace struct...
We study the phase-space structure of a dark-matter halo formed in a high resolution simulation of a...
We study the phase-space structure of a dark-matter halo formed in a high resolution simulation of a...
We study the formation of the Milky Way's halo in a Lambda CDM cosmology by scaling down a high reso...
International audienceUsing the motion of accreting particles on to haloes in cosmological N-body si...
We study the formation of the halo of the Milky Way in a Lambda-cold dark matter (LambdaCDM) cosmolo...
International audienceMost of the mass content of dark matter haloes is expected to be in the form o...
Using the motion of accreting particles onto halos in cosmological $N$-body simulations, we study th...
We study predictions for dark matter phase-space structure near the Sun based on high-resolution sim...
We study predictions for dark matter phase-space structure near the Sun based on high-resolution sim...
Most of the mass content of dark matter haloes is expected to be in the form of tidal debris. The de...
We study the orbital phase space of dark matter (DM) haloes in the AURIGA suite of cosmological hydr...
We present a new and completely general technique for calculating the fine-grained phase-pace struct...
We present a new and completely general technique for calculating the fine-grained phase-pace struct...
We present a new and completely general technique for calculating the fine-grained phase-pace struct...
We present a new and completely general technique for calculating the fine-grained phase-pace struct...
We study the phase-space structure of a dark-matter halo formed in a high resolution simulation of a...
We study the phase-space structure of a dark-matter halo formed in a high resolution simulation of a...
We study the formation of the Milky Way's halo in a Lambda CDM cosmology by scaling down a high reso...
International audienceUsing the motion of accreting particles on to haloes in cosmological N-body si...
We study the formation of the halo of the Milky Way in a Lambda-cold dark matter (LambdaCDM) cosmolo...
International audienceMost of the mass content of dark matter haloes is expected to be in the form o...
Using the motion of accreting particles onto halos in cosmological $N$-body simulations, we study th...
We study predictions for dark matter phase-space structure near the Sun based on high-resolution sim...
We study predictions for dark matter phase-space structure near the Sun based on high-resolution sim...
Most of the mass content of dark matter haloes is expected to be in the form of tidal debris. The de...
We study the orbital phase space of dark matter (DM) haloes in the AURIGA suite of cosmological hydr...