The haloes of merger remnants
arXiv:astro-ph/0701541 · doi:10.1111/j.1365-2966.2007.11516.x
Abstract
We perform collisionless N-body simulations of 1:1 galaxy mergers, using models which include a galaxy halo, disc and bulge, focusing on the behaviour of the halo component. The galaxy models are constructed without recourse to a Maxwellian approximation. We investigate the effect of varying the galaxies' orientation, their mutual orbit, and the initial velocity anisotropy or cusp strength of the haloes upon the remnant halo density profiles and shape, as well as on the kinematics. We observe that the halo density profile (determined as a spherical average, an approximation we find appropriate) is exceptionally robust in mergers, and that the velocity anisotropy of our remnant haloes is nearly independent of the orbits or initial anisotropy of the haloes. The remnants follow the halo anisotropy - local density slope (β-γ) relation suggested by Hansen & Moore (2006} in the inner parts of the halo, but βis systematically lower than this relation predicts in the outer parts. Remnant halo axis ratios are strongly dependent on the initial parameters of the haloes and on their orbits. We also find that the remnant haloes are significantly less spherical than those described in studies of simulations which include gas cooling.
10 pages, 11 figures, MNRAS accepted, edited to correct equation 4
References in corpus (4)
Cited by in corpus (9)
- The SAGES Legacy Unifying Globulars and GalaxieS Survey (SLUGGS): Sample definition, methods, and initial results
- A bar in the inner halo of barred galaxies I. Structure and kinematics of a representative model
- The slowing down of galaxy disks in dissipationless minor mergers
- Cosmic Evolution of Barred Galaxies up to z ~ 0.84
- Intrinsic Axis Ratio Distribution of Early-type Galaxies From Sloan Digital Sky Survey
- The Three Hundred project: galaxy cluster mergers and their impact on the stellar component of brightest cluster galaxies
- The behaviour of shape and velocity anisotropy in dark matter haloes
- EDGE: The shape of dark matter haloes in the faintest galaxies
- Asymmetric velocity anisotropies in remnants of collisionless mergers