GIANO-TNG spectroscopy of red supergiants in the young star cluster RSGC3
arXiv:1510.06870 · doi:10.1051/0004-6361/201526649
Abstract
The Scutum complex in the inner disk of the Galaxy has a number of young star clusters dominated by red supergiants that are heavily obscured by dust extinction and observable only at infrared wavelengths. These clusters are important tracers of the recent star formation and chemical enrichment history in the inner Galaxy. During the technical commissioning and as a first science verification of the GIANO spectrograph at the Telescopio Nazionale Galileo, we secured high-resolution (R=50,000) near-infrared spectra of five red supergiants in the young Scutum cluster RSGC3. Taking advantage of the full YJHK spectral coverage of GIANO in a single exposure, we were able to measure several tens of atomic and molecular lines that were suitable for determining chemical abundances. By means of spectral synthesis and line equivalent width measurements, we obtained abundances of Fe and iron-peak elements such as Ni, Cr, and Cu, alpha (O, Mg, Si, Ca, Ti), other light elements (C, N, F, Na, Al, and Sc), and some s-process elements (Y, Sr). We found average half-solar iron abundances and solar-scaled [X/Fe] abundance patterns for most of the elements, consistent with a thin-disk chemistry. We found depletion of [C/Fe] and enhancement of [N/Fe], consistent with standard CN burning, and low 12C/13C abundance ratios (between 9 and 11), which require extra-mixing processes in the stellar interiors during the post-main sequence evolution. We also found local standard of rest V(LSR)=106 km/s and heliocentric V(HEL)=90 km/s radial velocities with a dispersion of 2.3 km/s. The inferred radial velocities, abundances, and abundance patterns of RSGC3 are very similar to those previously measured in the other two young clusters of the Scutum complex, RSGC1 and RSGC2, suggesting a common kinematics and chemistry within the Scutum complex.
References in corpus (13)
- A massive cluster of Red Supergiants at the base of the Scutum-Crux arm
- The evolution of the Galactic metallicity gradient from high-resolution spectroscopy of open clusters
- Discovery of an Extraordinarily Massive Cluster of Red Supergiants
- The temperatures of Red Supergiants
- Chemical Abundances of Luminous Cool Stars in the Galactic Center from High-Resolution Infrared Spectroscopy
- Abundance gradients in the Milky Way for alpha elements, Iron peak elements, Barium, Lanthanum and Europium
- The cool supergiant population of the massive young star cluster RSGC1
- On the metallicity distribution of classical Cepheids in the Galactic inner disk
- Chemical Abundances of M giants in the Galactic Center: a Single Metal-Rich Population with Low [alpha/Fe]
- The Chemical Evolution of Fluorine in the Bulge - High-resolution K-band spectra of giants in three fields
- GIANO-TNG spectroscopy of red supergiants in the young star cluster RSGC2
- The Discovery of a Massive Cluster of Red Supergiants with GLIMPSE
- A GIANO-TNG high resolution IR spectrum of the airglow emission
Cited by in corpus (10)
- The Gaia-ESO Survey: the present-day radial metallicity distribution of the Galactic disc probed by pre-main-sequence clusters
- On a new and homogeneous metallicity scale for Galactic classical Cepheids - I. Physical parameters
- Stellar population astrophysics (SPA) with the TNG. GIANO-B spectroscopy of red supergiants in Alicante 7 and Alicante 10
- FeI lines in 0.91-1.33 m spectra of red giants for measuring the microturbulence and metallicities
- Impact of distance determinations on Galactic structure. I. Young and intermediate-age tracers
- New infrared spectral indices of luminous cold stars: from early K to M-types
- Chemical Abundances Of Open Clusters From High-Resolution Infrared Spectra. I. NGC 6940
- Origin of a massive hyper-runaway subgiant star LAMOST-HVS1 -- implication from Gaia and follow-up spectroscopy
- Identification of Absorption Lines of Heavy Metals in the Wavelength Range 0.97--1.32 Micron
- MAGIS (Measuring Abundances of red super Giants with Infrared Spectroscopy) project I. Establishment of an abundance analysis procedure for red supergiants and its evaluation with nearby stars