Investigating episodic mass loss in evolved massive stars: III. Spectroscopy of dusty massive stars in three northern galaxies
arXiv:2505.01498 · doi:10.1051/0004-6361/202453571
Abstract
Mass loss in massive stars is crucial to understanding how these stars evolve and explode. Despite increasing evidence indicating its importance, episodic mass loss remains poorly understood. Here we report the results of an optical spectroscopic survey of evolved massive stars in NGC 6822, IC 10, and IC 1613, conducted by the ASSESS project (Episodic Mass Loss in Evolved Massive Stars: Key to Understanding the Explosive Early Universe), which aimed to investigate the role of episodic mass loss, by targeting stars with infrared excesses indicating a dusty circumstellar environment. We assigned a spectral class to 122 unique sources, the majority of which are dusty. The rate of evolved massive stars was over 60% for the highest-priority targets. We discovered 2 blue supergiants, 1 yellow supergiant, 1 emission-line object, and confirmed 2 supernova remnant candidates, a Wolf-Rayet star, and 2 H II regions. Twenty-eight unique sources were classified as red supergiants, 21 of which are new discoveries. In IC 10, we increased the sample of spectroscopically confirmed RSGs from 1 to 17. We used the MARCS models to obtain their surface properties, most importantly the effective temperature, and spectral energy distribution fitting to obtain the stellar luminosity for 17 of them. The dusty RSGs are cooler, more luminous, more extinguished, and more evolved than the non-dusty ones, in agreement with previous findings. Investigating the optical photometric variability of the RSGs from light curves covering a period over a decade revealed that the dusty RSGs are more variable. We further highlight the very extinguished emission-line object, two RSGs that display a significant change in spectral type between two observed epochs, and four dusty K-type RSGs as candidates for having undergone episodic mass loss.
21 pages, 8 figures, 4 tables, 5 appendices. Accepted for publication in A&A
References in corpus (54)
- The Gaia mission
- Gaia Data Release 3: Summary of the content and survey properties
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- 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
- Spitzer SAGE Infrared Photometry of Massive Stars in the Large Magellanic Cloud
- 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
- The UKIRT Hemisphere Survey: Definition and J-band Data Release
- POSYDON: A General-Purpose Population Synthesis Code with Detailed Binary-Evolution Simulations
- Atmospheric dynamics and the mass loss process in red supergiant stars
- The VLT-FLAMES Tarantula Survey XVI. The optical+NIR extinction laws in 30 Doradus and the photometric determination of the effective temperatures of OB stars
- VLT spectroscopy of blue supergiants in IC 1613
- A dusty veil shading Betelgeuse during its Great Dimming
- Metallicity-dependent wind parameter predictions for OB stars
- Solar oxygen abundance
- Late-Type Red Supergiants: Too Cool for the Magellanic Clouds?
- Luminosities and mass-loss rates of Local Group AGB stars and Red Supergiants
- What causes the large extensions of red-supergiant atmospheres? Comparisons of interferometric observations with 1-D hydrostatic, 3-D convection, and 1-D pulsating model atmospheres
- Red Supergiant Stars as Cosmic Abundance Probes: KMOS Observations in NGC 6822
- An Infrared Census of DUST in Nearby Galaxies with Spitzer (DUSTiNGS), I. Overview
- Analytic, dust-independent mass-loss rates for red supergiant winds initiated by turbulent pressure
- Spatially resolved dusty torus toward the red supergiant WOH G64 in the Large Magellanic Cloud
- Evolved Massive Stars at Low-metallicity V. Mass-Loss Rate of Red Supergiant Stars in the Small Magellanic Cloud
- DUSTiNGS III: Distribution of Intermediate-Age and Old Stellar Populations in Disks and Outer Extremities of Dwarf Galaxies
- The Physical Properties of the Red Supergiant WOH G64: The Largest Star Known?
- The Great Dimming of Betelgeuse: a Surface Mass Ejection (SME) and its Consequences
- Atmosphere of Betelgeuse before and during the Great Dimming event revealed by tomography
- The Time-Averaged Mass-Loss Rates of Red Supergiants As Revealed by their Luminosity Functions in M31 and M33
- Tomography of cool giant and supergiant star atmospheres II. Signature of convection in the atmosphere of the red supergiant star Cep
- 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 Mass-Loss History of the Red Hypergiant VY CMa
- Establishing a mass-loss rate relation for red supergiants in the Large Magellanic Cloud
- The Araucaria Project. Distances to Nine Galaxies Based on a Statistical Analysis of their Carbon Stars (JAGB Method)
- Red Supergiants in M31: The Humphreys-Davidson limit at high metallicity
- The impact of winds on the spectral appearance of Red Supergiants
- Is Betelgeuse Really Rotating? Synthetic ALMA Observations of Large-scale Convection in 3D Simulations of Red Supergiants
- The effect of mass loss in models of red supergiants in the Small Magellanic Cloud
- Characterisation of red supergiants in the Gaia spectral range
- A machine-learning photometric classifier for massive stars in nearby galaxies I. The method
- Yellow Supergiants and Post-Red Supergiant Evolution in the Large Magellanic Cloud
- Investigating episodic mass loss in evolved massive stars: I. Spectroscopy of dusty massive stars in ten southern galaxies
- Physical parameters of red supergiants in dwarf irregular galaxies in the Local Group
- The Great Dimming of the hypergiant star RW Cephei: CHARA Array images and spectral analysis
- Properties of luminous red supergiant stars in the Magellanic Clouds
- Images of Betelgeuse with VLTI/MATISSE across the Great Dimming
- 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
- Red supergiant stars in IC 1613 and metallicity-dependent mixing length in the evolutionary model
- Extinction towards the cluster R136 in the Large Magellanic Cloud: An extinction law from the near-infrared to the ultraviolet
- Discovering new B[e] supergiants and candidate Luminous Blue Variables in nearby galaxies
- Oxygen Abundance Throughout the Dwarf Starburst IC 10