The origin of double-peak emission-line galaxies: rotating discs, bars or galaxy mergers?
arXiv:2212.02529 · doi:10.1051/0004-6361/202244746
Abstract
Emission lines with a double-peak (DP) shape, detected in the centre of galaxies, have been extensively used in the past to identify peculiar kinematics such as dual active galactic nuclei, outflows or mergers. From a large DP galaxy sample, a connection to minor merger galaxies with ongoing star formation was suggested. To gain a better understanding of different mechanisms creating a DP signature, we here explore synthetic SDSS spectroscopic observations computed from disc models and simulations. We show how a DP signature is connected to the central part of the rotation curve of galaxies, which is mostly shaped by the stellar bulge. We, furthermore, find that bars can create strong DP emission-line signatures when viewed along their major axis. Major mergers can form a central rotating disc in late post-coalescence merger stages (1\,Gyr after the final coalescence), which creates a DP signature. Minor mergers tend to show a DP feature with no correlation to the galaxy inclination within 350\,Myr after the final coalescence. Comparisons of these scenarii with observations disfavour major mergers, since these show predominantly elliptical and only a few S0 morphologies. Furthermore, at such a late merger stage the enhanced star formation is most likely faded. Bars and minor mergers, on the other hand, can be compared quite well with the observations. Both observations coincide with increased star formation found in observations, and minor mergers in particular do not show any dependency with the observation direction. However, observations resolving the galaxy kinematics spatially are needed to distinguish between the discussed possibilities. More insight into the origin of DP will be gained by a broader comparison with cosmological simulations. The understanding of the DP origin can provide important tools to study the mass growth of galaxies in future high redshift surveys.
22 pages, 19 figures, article accepted to A&A
References in corpus (24)
- 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
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- Galaxy Pairs in the Sloan Digital Sky Survey I: Star Formation, AGN Fraction, and the Luminosity/Mass-Metallicity Relation
- Understanding Galaxy Evolution through Emission Lines
- Star formation efficiency in galaxy interactions and mergers: a statistical study
- A Compact Supermassive Binary Black Hole System
- Galaxy Merger Morphologies and Time-Scales from Simulations of Equal-Mass Gas-Rich Disc Mergers
- A Near-Infrared Study of 2MASS Bars in Local Galaxies: An Anchor for High Redshift Studies
- Multiple minor mergers: formation of elliptical galaxies and constraints for the growth of spiral disks
- Bars, ovals and lenses in early-type disk galaxies: probes of galaxy evolution
- Fast galaxy bars continue to challenge standard cosmology
- The DEEP2 Galaxy Redshift Survey: AEGIS Observations of a Dual AGN at z=0.7
- Offset Active Galactic Nuclei as Tracers of Galaxy Mergers and Supermassive Black Hole Growth
- RCSED - A Value-Added Reference Catalog of Spectral Energy Distributions of 800,299 Galaxies in 11 Ultraviolet, Optical, and Near-Infrared Bands: Morphologies, Colors, Ionized Gas and Stellar Populations Properties
- Barred Galaxies in the IllustrisTNG Simulation
- The Origin of Double-peaked Narrow Lines in Active Galactic Nuclei II: Kinematic Classifications for the Population at z < 0.1
- Barred galaxies in the Illustris-1 and TNG100 simulations
- The combined and respective roles of imaging and stellar kinematics in identifying galaxy merger remnants
- A forming disk at z~0.6: Collapse of a gaseous disk or major merger remnant?
- Double-peak emission line galaxies in the SDSS catalogue. A minor merger sequence
- Accurate Identification of Galaxy Mergers with Stellar Kinematics
- Two interacting galaxies hiding as one, revealed by MaNGA
- Ultimate Merging at z~0.1
- Central star formation in double-peak gas rich radio galaxies
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- Projection Effects in Barred Galaxies Causing Wrong Interpretation of Radial Flows
- Molecular gas in a system of two interacting galaxies overlapping on the line-of-sight