Lopsided galaxies: the case of NGC 891
arXiv:0805.1104 · doi:10.1111/j.1365-2966.2008.13421.x
Abstract
It has been known for a long time that a large fraction of disc galaxies are lopsided. We simulate three different mechanisms that can induce lopsidedness: flyby interactions, gas accretion from cosmological filaments and ram pressure from the intergalactic medium. Comparing the morphologies, HI spectrum, kinematics and m=1 Fourier components, we find that all of these mechanisms can induce lopsidedness in galaxies, although in different degrees and with observable consequences. The timescale over which lopsidedness persists suggests that flybys can contribute to ~20 per cent of lopsided galaxies. We focus our detailed comparison on the case of NGC 891, a lopsided, edge-on galaxy with a nearby companion (UGC 1807). We find that the main properties of NGC 891 (morphology, HI spectrum, rotation curve, existence of a gaseous filament pointing towards UGC 1807) favour a flyby event for the origin of lopsidedness in this galaxy.
12 pages, 12 figures, MNRAS, accepted
References in corpus (12)
- Cold gas accretion in galaxies
- The cold gaseous halo of NGC 891
- NGC 4254: An Act of Harassment Uncovered by the Arecibo Legacy Fast ALFA Survey
- Are ring galaxies the ancestors of giant low surface brightness galaxies?
- Ram pressure stripping of an isolated Local Group dwarf galaxy: evidence for an intra-group medium
- The Lopsidedness of Present-Day Galaxies: Results from the Sloan Digital Sky Survey
- Kinematics of diffuse ionized gas in the disk halo interface of NGC 891 from Fabry-Pérot observations
- Intermediate-mass black holes and ultraluminous X-ray sources in the Cartwheel ring galaxy
- Constraints on Galactic Intermediate Mass Black Holes
- A dust component 2 kpc above the plane in NGC 891
- Spatial and Kinematical Lopsidedness of Atomic Hydrogen in the Ursa Major Group of Galaxies
- Intermediate-mass black holes in dwarf galaxies: the case of Holmberg II
Cited by in corpus (27)
- Cold Dark Matter Substructure and Galactic Disks II: Dynamical Effects of Hierarchical Satellite Accretion
- Lopsided Spiral Galaxies
- The merger fraction of active and inactive galaxies in the local Universe through an improved non-parametric classification
- An HST/ACS investigation of the spatial and chemical structure and sub-structure of NGC 891, a Milky Way analogue
- The disc-like host galaxies of radio-loud Narrow-Line Seyfert 1s
- IllustrisTNG in the HSC-SSP: image data release and the major role of mini mergers as drivers of asymmetry and star formation
- WALLABY Early Science - III. An HI Study of the Spiral Galaxy NGC 1566
- A low HI column density filament in NGC 2403: signature of interaction or accretion
- Testing a Dynamical Equilibrium Model of the Extraplanar Diffuse Ionized Gas in NGC 891
- Excitation of vertical breathing motion in disc galaxies by tidally-induced spirals in fly-by interactions
- What is Important? Morphological Asymmetries are Useful Predictors of Star Formation Rates of Star-forming Galaxies in SDSS Stripe 82
- Star Formation and Gas Accretion in Nearby Galaxies
- Angular momentum transport and evolution of lopsided galaxies
- Lopsided galactic bars
- 3D modeling of the molecular gas kinematics in optically-selected jellyfish galaxies
- {\it HST}/COS Observations of the Warm Ionized Gaseous Halo of NGC 891
- Lopsided galactic disks in IllustrisTNG
- Massive Galaxy Mergers Have Distinctive Global HI Profiles
- Warped Disk Galaxies. I. Linking U type Warps in Groups/Clusters to Jellyfish Galaxies
- WALLABY Pilot Survey: HI gas kinematics of galaxy pairs in cluster environment
- Kinematical asymmetry in the dwarf irregular galaxy WLM and a perturbed halo potential
- Mapping HI 21-cm in the Klemola 31 group at z = 0.029: emission and absorption towards PKS2020-370
- NGC 5523: An Isolated Product of Soft Galaxy Mergers?
- HI asymmetries in spatially resolved SIMBA galaxies
- Exploring the Magnetic Field Geometry in NGC 891 with SOFIA/HAWC+
- Shape asymmetries and the relation between lopsidedness and radial alignment in simulated galaxies
- Identifying lopsidedness in spiral galaxies using a Deep Convolutional Neural Network