Investigating episodic mass loss in evolved massive stars: I. Spectroscopy of dusty massive stars in ten southern galaxies
arXiv:2312.04626 · doi:10.1051/0004-6361/202348527
Abstract
The ASSESS project aims to determine the role of episodic mass-loss in the evolution of massive stars. As a first step, we construct a catalog of spectroscopically identified dusty, evolved massive stars in ten southern galaxies for which Spitzer point-source catalogs are available. We conducted multi-object spectroscopy of dusty massive star candidates in these galaxies (spanning Z = 0.06-1.6 Zo) using the VLT. We obtained 763 spectra in WLM, NGC 55, NGC 247, NGC 253, NGC 300, NGC 1313, NGC 3109, Sextans A, M83 and NGC 7793. The targets were selected using their Spitzer photometry, by prioritizing targets with a strong infrared excess. We determined a spectral classification for each target. Additionally, we used archival images from the HST to provide a visual classification for 80 targets, as a star, cluster, or galaxy. We provide a catalog of 541 spectroscopically classified sources including 185 massive stars, of which 154 are newly classified massive stars. The catalog contains 129 red supergiants, 27 blue supergiants, 10 yellow supergiants, four luminous blue variable candidates, seven supergiant B[e] stars and eight emission line objects. Evidence for circumstellar dust is found in 24% of these massive stars, based on their infrared colors. We report a success rate of 28% for identifying massive stars among our observed spectra, while the average success rate of our priority system in selecting evolved massive stars was 36%. Additionally, the catalog contains 21 background galaxies (including AGN and quasars), 10 carbon stars and 99 HII regions. We measured the line ratios [NII]/Ha and [SII]/Ha for 76 HII regions and 36 other spectra with nebular emission-lines, thereby identifying eight sources with shocked emission. We present the largest catalog of evolved massive stars and in particular of red supergiants in nearby galaxies at low Z beyond the Local Group.
47 pages, 7 figures, 9 tables, 5 appendices. Accepted for publication in A&A
References in corpus (48)
- The Gaia mission
- Binary interaction dominates the evolution of massive stars
- Physical Properties of Wolf-Rayet Stars
- The death of massive stars - I. Observational constraints on the progenitors of type II-P supernovae
- Observational constraints on the progenitors of core-collapse supernovae : the case for missing high mass stars
- The R136 star cluster hosts several stars whose individual masses greatly exceed the accepted 150 Msun stellar mass limit
- Spitzer SAGE Infrared Photometry of Massive Stars in the Large Magellanic Cloud
- The Effective Temperatures and Physical Properties of Magellanic Cloud Red Supergiants: The Effects of Metallicity
- A new mass-loss rate prescription for red supergiants
- A Survey of Local Group Galaxies Currently Forming Stars: III. A Search for Luminous Blue Variables and Other H-alpha Emission-Lined Stars
- Spitzer SAGE-SMC Infrared Photometry of Massive Stars in the Small Magellanic Cloud
- Quantitative Spectroscopy of 24 A supergiants in the Sculptor galaxy NGC 300: Flux weighted gravity luminosity relationship, metallicity and metallicity gradient
- The 2008 Luminous Optical Transient in the Nearby Galaxy NGC 300
- Probing the mass-loss history of AGB and red supergiant stars from CO rotational line profiles I. Theoretical model -- Mass-loss history unravelled in VY CMa
- The impact of mass-loss on the evolution and pre-supernova properties of red supergiants
- The dust condensation sequence in red super-giant stars
- Young stars and ionized nebulae in M83: comparing chemical abundances at high metallicity
- The Araucaria Project: the Local Group Galaxy WLM--Distance and metallicity from quantitative spectroscopy of blue Supergiants
- The Araucaria Project. VLT spectra of blue supergiants in WLM: classification and first abundances
- An Infrared Census of DUST in Nearby Galaxies with Spitzer (DUSTiNGS), II. Discovery of Metal-poor Dusty AGB Stars
- An Infrared Census of DUST in Nearby Galaxies with Spitzer (DUSTiNGS), I. Overview
- Spitzer Infrared Spectrographic point source classification in the Small Magellanic Cloud
- Evolved Massive Stars at Low-metallicity V. Mass-Loss Rate of Red Supergiant Stars in the Small Magellanic Cloud
- A survey of the Wolf-Rayet population of the barred, spiral galaxy NGC 1313
- Double bow shocks around young, runaway red supergiants: application to Betelgeuse
- The Great Dimming of Betelgeuse: a Surface Mass Ejection (SME) and its Consequences
- Resolving the core of R136 in the optical
- An Infrared Census of DUST in Nearby Galaxies with Spitzer (DUSTiNGS). IV. Discovery of High-Redshift AGB Analogs
- The Time-Averaged Mass-Loss Rates of Red Supergiants As Revealed by their Luminosity Functions in M31 and M33
- Explosion Imminent: the appearance of Red Supergiants at the point of core-collapse
- ALMA detection of CO rotational line emission in red supergiant stars of the massive young star cluster RSGC1 -- Determination of a new mass-loss rate prescription for red supergiants
- The Slow Demise of the Long-Lived SN 2005ip
- Evolved Massive Stars at Low-metallicity II. Red Supergiant Stars in the Small Magellanic Cloud
- The First Metallicity Study of M83 using the integrated UV light of Star Clusters
- A machine-learning photometric classifier for massive stars in nearby galaxies I. The method
- A new reference catalogue for the very metal-poor Universe: +150 OB stars in Sextans A
- Supernova Remnants in M83 as Observed with MUSE
- Spitzer Photometry of ~1 Million Stars in M31 and 15 Other Galaxies
- SOFIA observations of far-IR fine-structure lines in galaxies to measure metallicity
- Physical parameters of red supergiants in dwarf irregular galaxies in the Local Group
- The Infrared Massive Stellar Content of M83
- The Massive Star Population in M101. III. Spectra and Photometry of the Luminous and Variable Stars
- Properties of luminous red supergiant stars in the Magellanic Clouds
- The temperatures of red supergiants in low metallicity environments
- High-Resolution Spectra of Supernova Remnants in M83
- Discovering new B[e] supergiants and candidate Luminous Blue Variables in nearby galaxies
- Characterization of the Most Luminous Star in M33: A Super Symbiotic Binary
- The Araucaria Project: Deep near-infrared photometric maps of Local and Sculptor Group galaxies. I. Carina, Fornax, Sculptor
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- The effect of mass loss in models of red supergiants in the Small Magellanic Cloud
- Impact of main-sequence mass loss on the appearance, structure and evolution of Wolf-Rayet stars
- The Demographics of Binary Companions to Stripped-Envelope Supernovae: Confronting Observations with Population Synthesis
- Investigating episodic mass loss in evolved massive stars: II. Physical properties of red supergiants at subsolar metallicity
- Episodic mass loss in the very luminous red supergiant [W60] B90 in the Large Magellanic Cloud
- Investigating episodic mass loss in evolved massive stars: III. Spectroscopy of dusty massive stars in three northern galaxies
- Red Supergiants in the Milky Way and Nearby Galaxies
- Hertzsprung gap stars in nearby galaxies and the Quest for Luminous Red Novae Progenitors
- Explosions of pulsating red supergiants: a natural pathway for the diversity of Type II-P/L supernovae
- A Low Metallicity Massive Contact Binary Star System Candidate in WLM identified by Hubble and James Webb Space Telescope imaging
- A machine-learning photometric classifier for massive stars in nearby galaxies II. The catalog