We have resimulated the six galaxy-sized haloes of the Aquarius Project including metaldependent cooling, star formation and supernova feedback. This allows us to study not only how dark matter haloes respond to galaxy formation, but also how this response is affected by details of halo assembly history. In agreement with previous work, we find baryon condensation to lead to increased dark matter concentration. Dark matter density profiles differ substantially in shape from halo to halo when baryons are included, but in all cases the velocity dispersion decreases monotonically with radius. Some haloes show an approximately constant dark matter velocity anisotropy with β ≈ 0.1–0.2, while others retain the anisotropy structure of their baryon...
Simulations including solely dark matter performed over the last three decades have delivered an acc...
We compare assembly of dark matter (DM) halos with and without baryons from identical initial condit...
We compare assembly of dark matter (DM) halos with and without baryons from identical initial condit...
We have resimulated the six galaxy-sized haloes of the Aquarius Project including metaldependent coo...
We have studied the dark matter (DM) distribution in an ≈1012 h−1 M mass halo extracted from a simul...
The back-reaction of baryons on the dark matter halo density profile is of great interest, not least...
Aims. It is well known that the presence of baryons affects the dark matter host haloes. Exploring t...
We analyse the dark matter (DM) distribution in an ≈1012 M halo extracted from a simulation consiste...
textDark matter particles and baryons constitute a significant fraction of the mass of the universe...
textDark matter particles and baryons constitute a significant fraction of the mass of the universe...
International audienceThe role of baryonic physics, star formation, and stellar feedback, in shaping...
International audienceThe role of baryonic physics, star formation, and stellar feedback, in shaping...
International audienceThe role of baryonic physics, star formation, and stellar feedback, in shaping...
International audienceThe role of baryonic physics, star formation, and stellar feedback, in shaping...
International audienceThe role of baryonic physics, star formation, and stellar feedback, in shaping...
Simulations including solely dark matter performed over the last three decades have delivered an acc...
We compare assembly of dark matter (DM) halos with and without baryons from identical initial condit...
We compare assembly of dark matter (DM) halos with and without baryons from identical initial condit...
We have resimulated the six galaxy-sized haloes of the Aquarius Project including metaldependent coo...
We have studied the dark matter (DM) distribution in an ≈1012 h−1 M mass halo extracted from a simul...
The back-reaction of baryons on the dark matter halo density profile is of great interest, not least...
Aims. It is well known that the presence of baryons affects the dark matter host haloes. Exploring t...
We analyse the dark matter (DM) distribution in an ≈1012 M halo extracted from a simulation consiste...
textDark matter particles and baryons constitute a significant fraction of the mass of the universe...
textDark matter particles and baryons constitute a significant fraction of the mass of the universe...
International audienceThe role of baryonic physics, star formation, and stellar feedback, in shaping...
International audienceThe role of baryonic physics, star formation, and stellar feedback, in shaping...
International audienceThe role of baryonic physics, star formation, and stellar feedback, in shaping...
International audienceThe role of baryonic physics, star formation, and stellar feedback, in shaping...
International audienceThe role of baryonic physics, star formation, and stellar feedback, in shaping...
Simulations including solely dark matter performed over the last three decades have delivered an acc...
We compare assembly of dark matter (DM) halos with and without baryons from identical initial condit...
We compare assembly of dark matter (DM) halos with and without baryons from identical initial condit...