Yellow Supergiants in the Small Magellanic Cloud (SMC): Putting Current Evolutionary Theory to the Test
arXiv:1006.5742 · doi:10.1088/0004-637X/719/2/1784
Abstract
The yellow supergiant content of nearby galaxies provides a critical test of massive star evolutionary theory. While these stars are the brightest in a galaxy, they are difficult to identify because a large number of foreground Milky Way stars have similar colors and magnitudes. We previously conducted a census of yellow supergiants within M31 and found that the evolutionary tracks predict a yellow supergiant duration an order of magnitude longer than we observed. Here we turn our attention to the SMC, where the metallicity is 10x lower than that of M31, which is important as metallicity strongly affects massive star evolution. The SMC's large radial velocity (~160 km/s) allows us to separate members from foreground stars. Observations of ~500 candidates yielded 176 near-certain SMC supergiants, 16 possible SMC supergiants, along with 306 foreground stars and provide good relative numbers of yellow supergiants down to 12Mo. Of the 176 near-certain SMC supergiants, the kinematics predicted by the Besancon model of the Milky Way suggest a foreground contamination of >4%. After placing the SMC supergiants on the H-R diagram and comparing our results to the Geneva evolutionary tracks, we find results similar to those of the M31 study: while the locations of the stars on the H-R diagram match the locations of evolutionary tracks well, the models over-predict the yellow supergiant lifetime by a factor of ten. Uncertainties about the mass-loss rates on the main-sequence thus cannot be the primary problem with the models.
Accepted by the ApJ
References in corpus (6)
- The Effective Temperatures and Physical Properties of Magellanic Cloud Red Supergiants: The Effects of Metallicity
- The VLT-FLAMES survey of massive stars: Mass loss and rotation of early-type stars in the SMC
- The Physical Properties and Effective Temperature Scale of O-type Stars as a Function of Metallicity. III. More Results from the Magellanic Clouds
- A FUSE Survey of the Rotation Rates of Very Massive Stars in the Small and Large Magellanic Clouds
- Convective envelopes in rotating OB stars
- A Census of Massive Stars Across the Hertzsprung-Russell Diagram of Nearby Galaxies: What We Know and What We Don't
Cited by in corpus (59)
- Gaia Data Release 1: Catalogue validation
- Testing massive star evolution, star-formation history and feedback at low metallicity : Spectroscopic analysis of OB stars in the SMC Wing
- Yellow and Red Supergiants in the Large Magellanic Cloud
- The luminosities of cool supergiants in the Magellanic Clouds, and the Humphreys-Davidson limit revisited
- Final Targeting Strategy for the SDSS-IV APOGEE-2S Survey
- The Yellow and Red Supergiants of M33
- Massive donors in interacting binaries: effect of metallicity
- Partial-envelope stripping and nuclear-timescale mass transfer from evolved supergiants at low metallicity
- Discovery of a Thorne-Zytkow object candidate in the Small Magellanic Cloud
- Grids of stellar models with rotation VI: Models from 0.8 to 120 at a metallicity Z = 0.006
- Spitzer Infrared Spectrographic point source classification in the Small Magellanic Cloud
- A Spectroscopic Survey of Massive Stars in M31 and M33
- A new survey of cool supergiants in the Magellanic Clouds
- Evolved Massive Stars at Low-metallicity I. A Source Catalog for the Small Magellanic Cloud
- Wolf-Rayet stars in the Small Magellanic Cloud as testbed for massive star evolution
- Spectral Types of Red Supergiants in NGC 6822 and the Wolf-Lundmark-Melotte Galaxy
- The excess of cool supergiants from contemporary stellar evolution models defies the metallicity-independent Humphreys-Davidson limit
- Massive Stars in the Galaxies of the Local Group
- The Red Supergiant Content of M31
- The Luminosity Function of Red Supergiants in M31
- Shedding Light on the Isolation of Luminous Blue Variables
- A Modern Search for Wolf-Rayet Stars in the Magellanic Clouds. II. A Second Year of Discoveries
- Red Supergiants in M31 and M33 I. The Complete Sample
- Spectral type, temperature and evolutionary stage in cool supergiants
- The Sample of Red Supergiants in Twelve Low-Mass Galaxies of the Local Group
- A dearth of young and bright massive stars in the Small Magellanic Cloud
- Accurate luminosities from the oxygen 7771-4 A triplet and the fundamental parameters of F-G supergiants
- Evolved Massive Stars at Low-metallicity III. A Source Catalog for the Large Magellanic Cloud
- Broad-band Spectroscopy of the Ongoing Large Eruption of the Luminous Blue Variable R71
- A Modern Search for Wolf-Rayet Stars in the Magellanic Clouds. III. A Third Year of Discoveries
- Short Term Variability of Evolved Massive Stars with TESS II: A New Class of Cool, Pulsating Supergiants
- Core-collapse supernova progenitor constraints using the spatial distributions of massive stars in local galaxies
- Evolved Massive Stars at Low-metallicity II. Red Supergiant Stars in the Small Magellanic Cloud
- Multiwavelength observations of nova SMCN 2016-10a --- one of the brightest novae ever observed
- A machine-learning photometric classifier for massive stars in nearby galaxies I. The method
- The role of stellar expansion on the formation of gravitational wave sources
- Astronomical Spectroscopy
- Large proper motion of the Thorne-Żytkow object candidate HV 2112 reveals its likely nature as foreground Galactic S-star
- Multiplicity among the cool supergiants in the Magellanic Clouds
- A Runaway Red Supergiant in M31
- On Granulation and Irregular Variation of Red Supergiants
- The Evolution of Massive Stars: Bridging the Gap in the Local Group
- Cool, Luminous, and Highly Variable Stars in the Magellanic Clouds. II: Spectroscopic and Environmental Analysis of Thorne-Żytkow Object and Super-AGB Star Candidates
- Detection of new eruptions in the Magellanic Clouds LBVs R 40 and R 110
- Searching for the Next Galactic Luminous Red Nova
- Line-depth ratios as indicators of effective temperature and surface gravity
- The Discovery of QSOs Behind M31 and M33
- A Runaway Yellow Supergiant Star in the Small Magellanic Cloud
- Type IIP Supernova Progenitors III: Blue to Red Supergiant Ratio in Low Metallicity Models with Convective Overshoot
- A Runaway Giant in the Galactic Halo
- The massive star population of the Virgo Cluster galaxy NGC 4535
- H-alpha as a Luminosity Class Diagnostic for K- and M-type Stars
- The Complex Upper HR Diagram
- The drastic impact of Eddington-limit induced mass ejections on massive star populations
- A constant upper luminosity limit of cool supergiant stars down to the extremely low metallicity of I Zw 18
- J01020100-7122208: an accreted evolved blue straggler that wasn't ejected from a supermassive black hole
- Validating post-AGB candidates in the LMC and SMC using SALT spectra
- Hertzsprung gap stars in nearby galaxies and the Quest for Luminous Red Novae Progenitors
- The Properties of Fast Yellow Pulsating Supergiants: FYPS Point the Way to Missing Red Supergiants