Kinematic and stellar population properties of the counter-rotating components in the S0 galaxy NGC 1366
arXiv:1701.07631 · doi:10.1051/0004-6361/201630046
Abstract
Context. Many disk galaxies host two extended stellar components that rotate in opposite directions. The analysis of the stellar populations of the counter-rotating components provides constraints on the environmental and internal processes that drive their formation. Aims. The S0 NGC 1366 in the Fornax cluster is known to host a stellar component that is kinematically decoupled from the main body of the galaxy. Here we successfully separated the two counter-rotating stellar components to independently measure the kinematics and properties of their stellar populations. Methods. We performed a spectroscopic decomposition of the spectrum obtained along the galaxy major axis and separated the relative contribution of the two counter-rotating stellar components and of the ionized-gas component. We measured the line-strength indices of the two counter-rotating stellar components and modeled each of them with single stellar population models that account for the α/Fe overabundance. Results. We found that the counter-rotating stellar component is younger, has nearly the same metallicity, and is less α/Fe enhanced than the corotating component. Unlike most of the counter-rotating galaxies, the ionized gas detected in NGC 1366 is neither associated with the counter-rotating stellar component nor with the main galaxy body. On the contrary, it has a disordered distribution and a disturbed kinematics with multiple velocity components observed along the minor axis of the galaxy. Conclusions. The different properties of the counter-rotating stellar components and the kinematic peculiarities of the ionized gas suggest that NGC 1366 is at an intermediate stage of the acquisition process, building the counter-rotating components with some gas clouds still falling onto the galaxy.
A&A in press. 8 pages, 6 figures, 2 Table
References in corpus (11)
- HyperLEDA. III. The catalogue of extragalactic distances
- Dominant dark matter and a counter rotating disc: MUSE view of the low luminosity S0 galaxy NGC 5102
- Stellar Populations of Bulges in 14 Cluster Disc Galaxies
- Molecular gas and star formation in the red-sequence counter-rotating disc galaxy NGC 4550
- Building gas rings and rejuvenating S0 galaxies through minor mergers
- Stellar populations in the bulges of isolated galaxies
- NGC5719/13: interacting spirals forming a counter-rotating stellar disc
- The difference in age of the two counter-rotating stellar disks of the spiral galaxy NGC 4138
- Disk heating and bending instability in galaxies with counterrotation
- Stellar populations of the bulges of four spiral galaxies
- The UV window on counter rotating ETGs: insight from SPH simulations with chemo-photometric implementation
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- Infrared Telescope Facility (IRTF) spectral library II: New indices in Y, J, H, and L atmospheric windows
- MUSE observations of the counter-rotating nuclear ring in NGC 7742
- Stellar CoRGI in MaNGA: Stellar Counterrotating Galaxies Identified in the MaNGA Survey
- Detectability of large-scale counter-rotating stellar disks in galaxies with integral-field spectroscopy