Triaxial Cosmological Haloes and the Disc of Satellites
arXiv:1306.6016 · doi:10.1093/mnras/stt1253
Abstract
We construct simple triaxial generalisations of Navarro-Frenk-White haloes. The models have elementary gravitational potentials, together with a density that is cusped like 1/r at small radii and falls off like 1/r^3 at large radii. The ellipticity varies with radius in a manner that can be tailored to the user's specification. The closed periodic orbits in the planes perpendicular to the short and long axes of the model are well-described by epicyclic theory, and can be used as building blocks for long-lived discs. As an application, we carry out the simulations of thin discs of satellites in triaxial dark halo potentials. This is motivated by the recent claims of an extended, thin disc of satellites around the M31 galaxy with a vertical rms scatter of ~12 kpc and a radial extent of ~ 300 kpc (Ibata et al. 2013). We show that a thin satellite disc can persist over cosmological times if and only if it lies in the planes perpendicular to the long or short axis of a triaxial halo, or in the equatorial or polar planes of a spheroidal halo. In any other orientation, then the disc thickness doubles on ~5 Gyr timescales and so must have been born with an implausibly small vertical scaleheight.
7 pages, 6 figures, MNRAS, in press. This revised version removes erroneous statements on lopsidedness
References in corpus (2)
Cited by in corpus (26)
- The total mass of the Large Magellanic Cloud from its perturbation on the Orphan stream
- The Milky Way total mass profile as inferred from Gaia DR2
- Tango for three: Sagittarius, LMC, and the Milky Way
- The large-scale structure of the halo of the Andromeda galaxy II. Hierarchical structure in the Pan-Andromeda Archaeological Survey
- A dynamical model of the local cosmic expansion
- Stray, swing and scatter: angular momentum evolution of orbits and streams in aspherical potentials
- Quantifying the Stellar Halo's Response to the LMC's Infall with Spherical Harmonics
- Vast planes of satellites in a high resolution simulation of the Local Group: comparison to Andromeda
- A comparison of the distribution of satellite galaxies around Andromeda and the results of CDM simulations
- Evolution of galactic planes of satellites in the EAGLE simulation
- On the Stability of Satellite Planes I: Effects of Mass, Velocity, Halo Shape and Alignment
- Internal Alignments of Red Versus Blue Discs in Dark Matter Halos
- N-body simulations of the Carina dSph in MOND
- Models of Distorted and Evolving Dark Matter Halos
- Stellar Spiral Structures in Triaxial Dark Matter Haloes
- Stability of Satellite Planes in M31 II: Effects of the Dark Subhalo Population
- The co-planarity of satellite galaxies delivered by randomly aligned cold mode accretion streams
- On Asymmetric Distributions of Satellite Galaxies
- The shapes and alignments of the satellites of the Milky Way and Andromeda
- A modern view of galaxies and their stellar populations
- On the origin of the asymmetric dwarf galaxy distribution around Andromeda
- The spatial distribution of satellites in galaxy clusters
- Impact of Cosmological Satellites on Stellar Discs: Dissecting One Satellite at a Time
- Resolution of the small scale structure issues with dissipative dark matter from multiple Standard Model sectors
- The Orthogonally Aligned Dark Halo of an Edge-on Lensing Galaxy in the Hubble Frontier Fields: A Challenge for Modified Gravity
- Self-consistent potential-density pairs of thick disks and flattened galaxies