Photometric metallicity map of the Small Magellanic Cloud
arXiv:1801.03403 · doi:10.1093/mnras/sty087
Abstract
We have created an estimated metallicity map of the Small Magellanic Cloud (SMC) using the Magellanic Cloud Photometric Survey (MCPS) and Optical Gravitational Lensing Experiment (OGLE III) photometric data. This is a first of its kind map of metallicity up to a radius of 2.5. We identify the RGB in the V, (VI) colour magnitude diagrams of small subregions of varying sizes in both data sets. We use the slope of the RGB as an indicator of the average metallicity of a subregion, and calibrate the RGB slope to metallicity using available spectroscopic data for selected subregions. The average metallicity of the SMC is found to be [Fe/H] = 0.94 dex ([Fe/H] = 0.09) from OGLE III, and [Fe/H] = 0.95 dex ([Fe/H] = 0.08) from MCPS. We confirm a shallow but significant metallicity gradient within the inner SMC up to a radius of 2.5 (0.0450.004 dex deg to 0.0670.006 dex deg).
27 pages, 29 figures, Accepted for publication in MNRAS. arXiv admin note: text overlap with arXiv:1510.05769
References in corpus (15)
- Are the Magellanic Clouds on their First Passage about the Milky Way?
- Age Determination of Six Intermediate-age SMC Star Clusters with HST/ACS
- Calcium II Triplet Spectroscopy of LMC Red Giants. I. Abundances and Velocities for a Sample of Populous Clusters
- The Chemical Enrichment History of the Small Magellanic Cloud and Its Gradients
- The VMC Survey - XIV. First results on the look-back time star-formation rate tomography of the Small Magellanic Cloud
- The VMC Survey. XXV. The 3D structure of the Small Magellanic Cloud from Classical Cepheids
- Red Giants in the Small Magellanic Cloud. II. Metallicity Gradient and Age-Metallicity Relation
- Ca II Triplet Spectroscopy of Small Magellanic Cloud Red Giants. III. Abundances and Velocities for a Sample of 14 Clusters
- OGLE-ing the Magellanic System: Stellar populations in the Magellanic Bridge
- Disk of the Small Magellanic Cloud as traced by Cepheids
- Chemical evolution of the Small Magellanic Cloud based on planetary nebulae
- Formation of the Small Magellanic Cloud: ancient major merger as a solution to the kinematical differences between old stars and HI gas
- Morphology and metallicity of the Small Magellanic Cloud using RRab stars
- RR Lyrae variables in the Small Magellanic Cloud - II. The extended area: chemical and structural analysis
- From K giants to G dwarfs: stellar lifetime effects on metallicity distributions derived from red giants
Cited by in corpus (15)
- The ALMA REBELS Survey. Epoch of Reionization giants: properties of dusty galaxies at
- The Panchromatic Hubble Andromeda Treasury: Triangulum Extended Region (PHATTER) I. Ultraviolet to Infrared Photometry of 22 Million Stars in M33
- Carbon stars as standard candles: II. The median J magnitude as a distance indicator
- The VMC survey -- XXXIX: Mapping metallicity trends in the Small Magellanic Cloud using near-infrared passbands
- Cool, Luminous, and Highly Variable Stars in the Magellanic Clouds from ASAS-SN: Implications for Thorne-Żytkow Objects and Super-Asymptotic Giant Branch Stars
- The Detection of Hot Molecular Cores in the Small Magellanic Cloud
- Metallicity estimates of young clusters in the Magellanic Clouds from Stromgren photometry of supergiant stars
- Herschel spectroscopy of Massive Young Stellar Objects in the Magellanic Clouds
- Detection of Be II in the Small Magellanic Cloud
- HI filaments as potential compass needles? Comparing the magnetic field structure of the Small Magellanic Cloud to the orientation of GASKAP-HI filaments
- Star cluster formation from giant molecular clouds in the Small Magellanic Cloud about 2 Gyr ago: their origin, structures, and kinematics
- The Evolution of Magellanic-like Galaxy Pairs and The Production of Magellanic Stream Analogues in Simulations with Tides, Ram Pressure, and Stellar Feedback
- Supersoft X-Ray Nebulae in the Large Magellanic Cloud
- Linking the properties of accreting white dwarfs with the ionization state of their ambient medium
- The stellar content of H72.97-69.39, a potential super star cluster in the making