GIANO-TNG spectroscopy of red supergiants in the young star cluster RSGC3
L. Origlia, E. Oliva, N. Sanna, A. Mucciarelli, E. Dalessandro, S., Scuderi, C. Baffa, V. Biliotti, L. Carbonaro, G. Falcini, E. Giani, M., Iuzzolino, F. Massi, M. Sozzi, A. Tozzi, A. Ghedina, F. Ghinassi, M. Lodi, A., Harutyunyan, M. Pedani

TL;DR
This study used high-resolution near-infrared spectroscopy to analyze red supergiants in the RSGC3 cluster, revealing chemical abundances and kinematic properties that suggest a shared origin with other clusters in the Scutum complex.
Contribution
First high-resolution infrared spectral analysis of RSGC3's red supergiants, providing detailed chemical abundances and kinematic data.
Findings
Average half-solar iron abundance and solar-scaled element patterns.
Evidence of standard CN burning with C depletion and N enhancement.
Radial velocities consistent with other clusters in the Scutum complex.
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…
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