The SAMI Galaxy Survey: Asymmetry in Gas Kinematics and its links to Stellar Mass and Star Formation
arXiv:1610.02773 · doi:10.1093/mnras/stw2605
Abstract
We study the properties of kinematically disturbed galaxies in the SAMI Galaxy Survey using a quantitative criterion, based on kinemetry (Krajnovic et al.). The approach, similar to the application of kinemetry by Shapiro et al. uses ionised gas kinematics, probed by Hα emission. By this method 23+/-7% of our 360-galaxy sub-sample of the SAMI Galaxy Survey are kinematically asymmetric. Visual classifications agree with our kinemetric results for 90% of asymmetric and 95% of normal galaxies. We find stellar mass and kinematic asymmetry are inversely correlated and that kinematic asymmetry is both more frequent and stronger in low-mass galaxies. This builds on previous studies that found high fractions of kinematic asymmetry in low mass galaxies using a variety of different methods. Concentration of star forma- tion and kinematic disturbance are found to be correlated, confirming results found in previous work. This effect is stronger for high mass galaxies (log(M*) > 10) and indicates that kinematic disturbance is linked to centrally concentrated star formation. Comparison of the inner (within 0.5Re) and outer Hα equivalent widths of asymmetric and normal galaxies shows a small but significant increase in inner equivalent width for asymmetric galaxies.
29 pages, 21 figures
References in corpus (27)
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- UV Star Formation Rates in the Local Universe
- Astrophysics Source Code Library
- The SAMI Galaxy Survey: instrument specification and target selection
- Kinemetry of SINS High-Redshift Star-Forming Galaxies: Distinguishing Rotating Disks from Major Mergers
- The Baryon Content of Extremely Low Mass Dwarf Galaxies
- The Structures of Distant Galaxies I: Galaxy Structures and the Merger Rate to z~3 in the Hubble Ultra-Deep Field
- The SAMI Galaxy Survey: Shocks and Outflows in a normal star-forming galaxy
- Galaxy And Mass Assembly (GAMA): Galaxy close-pairs, mergers, and the future fate of stellar mass
- Mapping galaxy encounters in numerical simulations: The spatial extent of induced star formation
- The SAMI Galaxy Survey: Early Data Release
- The role of minor mergers in the recent star formation history of early-type galaxies
- The Millennium Galaxy Catalogue: The connection between close pairs and asymmetry; implications for the galaxy merger rate
- Merger Rates of Dark-Matter Haloes
- The SAMI Galaxy Survey: Cubism and covariance, putting round pegs into square holes
- The SAMI Galaxy Survey: Spatially resolving the environmental quenching of star formation in GAMA galaxies
- Galaxy And Mass Assembly (GAMA): Refining the Local Galaxy Merger Rate using Morphological Information
- The SAMI Galaxy Survey: Towards a unified dynamical scaling relation for galaxies of all types
- A relationship between specific star formation rate and metallicity gradient within z=1 galaxies from KMOS-HiZELS
- IMAGES I. Strong evolution of galaxy kinematics since z=1
- The statistical properties of LCDM halo formation
- Stability of Galactic Gas Disks and the Formation of Massive Clusters
- The radio relic in Abell 2256: overall spectrum and implications for electron acceleration
- Galaxy and Mass Assembly (GAMA): merging galaxies and their properties
- Galaxy And Mass Assembly (GAMA): The unimodal nature of the dwarf galaxy population
- Internal kinematics of spiral galaxies in distant clusters III. Velocity fields from FORS2/MXU spectroscopy
- Central star formation and metallicity in CALIFA interacting galaxies
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- The SAMI Galaxy Survey: Revisiting Galaxy Classification Through High-Order Stellar Kinematics
- The SAMI Galaxy Survey: Spatially Resolving the Main Sequence of Star Formation
- Spatially resolved star formation and fuelling in galaxy interactions
- The SAMI Galaxy Survey: Gas velocity dispersions in low- star-forming galaxies and the drivers of turbulence
- SDSS-IV MaNGA: Kinematic Asymmetry as An Indicator of Galaxy Interaction in Paired Galaxies
- The combined and respective roles of imaging and stellar kinematics in identifying galaxy merger remnants
- The Impact of Merging on The Origin of Kinematically Misaligned and Counter-rotating Galaxies in MaNGA
- The SAMI Galaxy Survey: The Low-Redshift Stellar Mass Tully-Fisher Relation
- Accurate Identification of Galaxy Mergers with Stellar Kinematics
- Towards robust determination of non-parametric morphologies in marginal astronomical data: resolving uncertainties with cosmological hydrodynamical simulations
- What is Important? Morphological Asymmetries are Useful Predictors of Star Formation Rates of Star-forming Galaxies in SDSS Stripe 82
- The observability of galaxy merger signatures in nearby gas-rich spirals
- SHDE: Survey description and mass-kinematics scaling relations for dwarf galaxies
- The SAMI Galaxy Survey: Bayesian Inference for Gas Disk Kinematics using a Hierarchical Gaussian Mixture Model
- Systematically Asymmetric: A comparison of \hi\ profile asymmetries in real and simulated galaxies
- Massive Galaxy Mergers Have Distinctive Global HI Profiles
- The Velocity Map Asymmetry of Ionized Gas in MaNGA. I. The Catalog and General Properties
- Centrally concentrated molecular gas driving galactic-scale ionised gas outflows in star-forming galaxies
- The Chemodynamics of the Stellar Populations in M31 from APOGEE Integrated Light Spectroscopy
- SAMI-HI: the connection between global asymmetry in the ionised and neutral atomic hydrogen gas in galaxies
- Using machine learning to study the kinematics of cold gas in galaxies
- Kinematical Fluctuations Vary with Galaxy Surface Mass Density
- The kinematic imprinting of environmental quenching in galaxies
- Kinematical small-scale fluctuations do not affect the measurement of the dynamical mass of galaxies