We present a new technique to probe the central dark matter (DM) density profile of galaxies that harnesses both the survival and observed properties of star clusters. As a first application, we apply our method to the `ultra-faint' dwarf Eridanus II (Eri II) that has a lone star cluster ~45 pc from its centre. Using a grid of collisional N-body simulations, incorporating the effects of stellar evolution, external tides and dynamical friction, we show that a DM core for Eri II naturally reproduces the size and the projected position of its star cluster. By contrast, a dense cusped galaxy requires the cluster to lie implausibly far from the centre of Eri II (>1 kpc), with a high inclination orbit that must be observed at a particular orbital...
In the standard Lambda cold dark matter paradigm, pure dark matter simulations predict dwarf galaxie...
We use high resolution simulations of isolated dwarf galaxies to study the physics of dark matter cu...
International audienceAims. We use stellar line-of-sight velocities to constrain the dark-matter den...
We present a new technique to probe the central dark matter (DM) density profile of galaxies that ha...
Star clusters are collisional and dark matter (DM) free stellar systems, where their evolution is ru...
The Eridanus II (EriII) 'ultra-faint' dwarf has a large (15 pc) and low-mass (4.3 × 103 M·) star clu...
International audienceThe Eridanus II (EriII) ‘ultra-faint’ dwarf has a large (15 pc) and low-mass (...
We present deep imaging of the most distant dwarf discovered by the Dark Energy Survey, Eridanus II ...
Dwarf galaxies provide unique insights into the cosmology of our Universe. They areat the scale most...
We present deep Hubble Space Telescope (HST) photometry of the ultra-faint dwarf galaxy Eridanus II ...
International audienceAims. It has been shown that the ultra-faint dwarf galaxy Eridanus 2 may host ...
Aims. It has been shown that the ultra-faint dwarf galaxy Eridanus 2 may host a stellar cluster in i...
Through a suite of direct N-body simulations, we explore how the structural and kinematic evolution ...
The inner dark matter (DM) density slope is an important test of our understanding of DM and its int...
International audienceThe presence of a dark matter core in the central kiloparsec of many dwarf gal...
In the standard Lambda cold dark matter paradigm, pure dark matter simulations predict dwarf galaxie...
We use high resolution simulations of isolated dwarf galaxies to study the physics of dark matter cu...
International audienceAims. We use stellar line-of-sight velocities to constrain the dark-matter den...
We present a new technique to probe the central dark matter (DM) density profile of galaxies that ha...
Star clusters are collisional and dark matter (DM) free stellar systems, where their evolution is ru...
The Eridanus II (EriII) 'ultra-faint' dwarf has a large (15 pc) and low-mass (4.3 × 103 M·) star clu...
International audienceThe Eridanus II (EriII) ‘ultra-faint’ dwarf has a large (15 pc) and low-mass (...
We present deep imaging of the most distant dwarf discovered by the Dark Energy Survey, Eridanus II ...
Dwarf galaxies provide unique insights into the cosmology of our Universe. They areat the scale most...
We present deep Hubble Space Telescope (HST) photometry of the ultra-faint dwarf galaxy Eridanus II ...
International audienceAims. It has been shown that the ultra-faint dwarf galaxy Eridanus 2 may host ...
Aims. It has been shown that the ultra-faint dwarf galaxy Eridanus 2 may host a stellar cluster in i...
Through a suite of direct N-body simulations, we explore how the structural and kinematic evolution ...
The inner dark matter (DM) density slope is an important test of our understanding of DM and its int...
International audienceThe presence of a dark matter core in the central kiloparsec of many dwarf gal...
In the standard Lambda cold dark matter paradigm, pure dark matter simulations predict dwarf galaxie...
We use high resolution simulations of isolated dwarf galaxies to study the physics of dark matter cu...
International audienceAims. We use stellar line-of-sight velocities to constrain the dark-matter den...