Angular momentum transfer from a rotating stellar bar has been proposed by Weinberg & Katz (2002) as a mechanism to destroy dark-matter cusps in a few rotation periods. The N-body simulations performed by these authors in support of their claim employed spherical harmonics for the force computation and were, as shown by Sellwood (2003), very sensitive to inclusion of asymmetric terms (odd l,m). In order to disentangle possible numerical artifacts due to the usage of spherical harmonics from genuine stellar dynamical effects, we performed similar experiments using a tree code and find that significant cusp destruction requires substantially more angular momentum than is realistically available. However, we find that the simplified model (a N...
I review the arguments for the importance of halo structure in driving galaxy evolution and coupling...
Cosmological simulations show that dark matter halos surrounding baryonic disks have a wide range of...
N-body simulations have revealed a wealth of information about dark matter halos; however, their res...
Simulations predict that the dark matter halos of galaxies should have central cusps, while those in...
Simulations predict that the dark matter halos of galaxies should have central cusps, while those in...
We propose that angular momentum transfer from the baryons to the dark matter (DM) during the early ...
We propose that angular momentum transfer from the baryons to the dark matter (DM) during the early ...
The evolution of a stellar bar transforms not only the galactic disc, but also the host dark matter ...
Abstract: Various studies have shown that dark matter halo properties like concentration, triaxialit...
This paper explores resonance-driven secular evolution between a bar and dark matter halo using N-bo...
This paper explores resonance-driven secular evolution between a bar and dark-matter halo using N-bo...
We demonstrate using numerical simulations of isolated galaxies that growth of stellar bars in spinn...
We present a technique for constructing equilibrium triaxial N-body haloes with nearly arbitrary den...
International audienceCosmological N-body simulations indicate that the dark matter haloes of galaxi...
I review the arguments for the importance of halo structure in driving galaxy evolution and coupling...
Cosmological simulations show that dark matter halos surrounding baryonic disks have a wide range of...
N-body simulations have revealed a wealth of information about dark matter halos; however, their res...
Simulations predict that the dark matter halos of galaxies should have central cusps, while those in...
Simulations predict that the dark matter halos of galaxies should have central cusps, while those in...
We propose that angular momentum transfer from the baryons to the dark matter (DM) during the early ...
We propose that angular momentum transfer from the baryons to the dark matter (DM) during the early ...
The evolution of a stellar bar transforms not only the galactic disc, but also the host dark matter ...
Abstract: Various studies have shown that dark matter halo properties like concentration, triaxialit...
This paper explores resonance-driven secular evolution between a bar and dark matter halo using N-bo...
This paper explores resonance-driven secular evolution between a bar and dark-matter halo using N-bo...
We demonstrate using numerical simulations of isolated galaxies that growth of stellar bars in spinn...
We present a technique for constructing equilibrium triaxial N-body haloes with nearly arbitrary den...
International audienceCosmological N-body simulations indicate that the dark matter haloes of galaxi...
I review the arguments for the importance of halo structure in driving galaxy evolution and coupling...
Cosmological simulations show that dark matter halos surrounding baryonic disks have a wide range of...
N-body simulations have revealed a wealth of information about dark matter halos; however, their res...