The isolation of Luminous Blue Variables resembles aging B-type supergiants, not the most massive unevolved stars
arXiv:1908.06104 · doi:10.1093/mnras/stz2277
Abstract
Luminous blue variables (LBVs) are suprisingly isolated from the massive O-type stars that are their putative progenitors in single-star evolution, implicating LBVs as binary evolution products. Aadland et al. (A19) found that LBVs are, however, only marginally more dispersed than a photometrically selected sample of bright blue stars (BBS) in the LMC, leading them to suggest that LBV environments may not exclude a single-star origin. In both comparisons, LBVs have the same median separation, confirming that any incompleteness in the O-star sample does not fabricate LBV isolation. Instead, the relative difference arises because the photometric BBS sample is far more dispersed than known O-type stars. Evidence suggests that the large BBS separation arises because it traces less massive (~20 Msun), aging blue supergiants. Although photometric criteria used by A19 aimed to select only the most massive unevolved stars, visual-wavelength color selection cannot avoid contamination because O and early B stars have almost the same intrinsic color. Spectral types confirm that the BBS sample contains many B supergiants. Moreover, the observed BBS separation distribution matches that of spectroscopically confirmed early B supergiants, not O-type stars, and matches predictions for a ~10 Myr population, not a 3-4 Myr population. A broader implication for ages of stellar populations is that bright blue stars are not a good tracer of the youngest massive O-type stars. Bright blue stars in nearby galaxies (and unresolved blue light in distant galaxies) generally trace evolved blue supergiants akin to SN 1987A's progenitor.
12 pages, 2 Figs., accepted in MNRAS
References in corpus (15)
- Binary interaction dominates the evolution of massive stars
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- The effect of massive binaries on stellar populations and supernova progenitors
- Massive runaways and walkaway stars
- Spectral models for binary products: Unifying Subdwarfs and Wolf-Rayet stars as a sequence of stripped-envelope stars
- Luminous Blue Variables are Antisocial: Their Isolation Implies that they are Kicked Mass Gainers in Binary Evolution
- Luminous Blue Variables and superluminous supernovae from binary mergers
- A Modern Search for Wolf-Rayet Stars in the Magellanic Clouds: First Results
- A Modern Search for Wolf-Rayet Stars in the Magellanic Clouds. IV. A Final Census
- Discrepancies in the ages of young star clusters; evidence for mergers?
- On the Gaia DR2 distances for Galactic Luminous Blue Variables
- Shedding Light on the Isolation of Luminous Blue Variables
- Blue supergiant progenitor models of Type II supernovae
- The isolation of Luminous Blue Variables: On subdividing the sample
- Impact of binary interaction on the evolution of blue supergiants
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- A characterization of ASAS-SN core-collapse supernova environments with VLT+MUSE: I. Sample selection, analysis of local environments, and correlations with light curve properties
- Centrifugally Driven Mass Loss and Outbursts of Massive Stars
- Candidate LBV stars in galaxy NGC 7793 found via HST photometry + MUSE spectroscopy
- Luminous Blue Variables
- Kinematics of Luminous Blue Variables in the Large Magellanic Cloud
- The Sunburst Arc with JWST: II. Observations of an Eta Carinae Analog at
- Five years of BRITE-Constellation photometry of the luminous blue variable P Cygni: properties of the stochastic low-frequency variability
- How long can LBVs sleep? A long-term photometric vaiability and spectral study of the Galactic candidate luminous blue variable MN112
- LBV phenomenon and binarity: The environment of HR Car
- On the spatial distribution of luminous blue variables in the M33 galaxy
- The Age of the R127 & R128 Clusters: Implications for the LBV