Co-orbiting planes of sub-halos are similarly unlikely around paired and isolated hosts
arXiv:1406.6062 · doi:10.1088/2041-8205/789/1/L24
Abstract
Sub-halos in dark-matter-based cosmological simulations tend to be distributed approximately isotropically around their host. The existence of highly flattened, co-orbiting planes of satellite galaxies has therefore been identified as a possible problem for these cosmological models, but so far studies have not considered the hosts' environments. That satellite planes are now known around both major galaxies in the Local Group raises the question whether they are more likely around paired hosts. In a first attempt to investigate this possibility we focus on the flattening and orbital coherence of the 11 brightest satellite galaxies of the vast polar structure (VPOS) around the Milky Way (MW). We search for VPOS analogs in the ELVIS suite of cosmological simulations, which consist of 24 paired and 24 isolated host halos. We do not find significant differences between the properties of sub-halo distributions around paired and isolated hosts. The observed flattening and the observed orbital alignment are each reproduced by only 0.2 to 2 per cent of paired and isolated systems incorporating the obscuration of satellites by randomly oriented galactic discs. Only one of all 4800 analyzed realizations (0.02 per cent) reproduces both parameters simultaneously, but the average orbital pole of this sub-halo system does not align as well with the normal to the plane fit as observed. That the MW is part of a galaxy pair thus does not help in explaining the existence of the VPOS if the satellite galaxies are identified with sub-halos found in dissipationless simulations.
15 pages, 3 figures, 2 tables, published in The Astrophysical Journal Letters
References in corpus (7)
- Properties of galaxies reproduced by a hydrodynamic simulation
- A Vast Thin Plane of Co-rotating Dwarf Galaxies Orbiting the Andromeda Galaxy
- Small Dwarf Galaxies Within Larger Dwarfs: Why Some Are Luminous While Most Go Dark
- Co-orbiting satellite galaxy structures are still in conflict with the distribution of primordial dwarf galaxies
- Infall of substructures onto a Milky Way-like dark halo
- A thousand shadows of Andromeda: rotating planes of satellites in the Millennium-II cosmological simulation
- Reproducing properties of MW dSphs as descendants of DM-free TDGs
Cited by in corpus (18)
- The PAndAS view of the Andromeda satellite system - II. Detailed properties of 23 M31 dwarf spheroidal galaxies
- From galactic bars to the Hubble tension: weighing up the astrophysical evidence for Milgromian gravity
- The Milky Way's Disk of Classical Satellite Galaxies in Light of Gaia DR2
- Planes of satellites around Milky Way/M31-mass galaxies in the FIRE simulations and comparisons with the Local Group
- Vast planes of satellites in a high resolution simulation of the Local Group: comparison to Andromeda
- A new spin on disks of satellite galaxies
- The Clustering of Orbital Poles Induced by the LMC: Hints for the Origin of Planes of Satellites
- On the Stability of Satellite Planes I: Effects of Mass, Velocity, Halo Shape and Alignment
- Extended stellar substructure surrounding the Boötes I dwarf spheroidal galaxy
- Do halos that form early, have high concentration, are part of a pair, or contain a central galaxy potential host more pronounced planes of satellite galaxies?
- An updated detailed characterization of planes of satellites in the MW and M31
- Sizing from the Smallest Scales: The Mass of the Milky Way
- Stability of Satellite Planes in M31 II: Effects of the Dark Subhalo Population
- The imprint of galaxy mergers on satellite planes in a cosmological context
- On the absence of backsplash analogues to NGC 3109 in the CDM framework
- The Orthogonally Aligned Dark Halo of an Edge-on Lensing Galaxy in the Hubble Frontier Fields: A Challenge for Modified Gravity
- Dark sector domain walls could explain the observed planes of satellites
- Testing a proposed "planarity" tool for studying satellite systems: On the alleged consistency of Milky Way satellite galaxy planes with CDM