One of the most massive stars in the Galaxy may have formed in isolation
arXiv:1309.7651 · doi:10.1093/mnras/stt1817
Abstract
Very massive stars, 100 times heavier than the sun, are rare. It is not yet known whether such stars can form in isolation or only in star clusters. The answer to this question is of fundamental importance. The central region of our Galaxy is ideal for investigating very massive stars and clusters located in the same environment. We used archival infrared images to investigate the surroundings of apparently isolated massive stars presently known in the Galactic Center. We find that two such isolated massive stars display apparent bow shocks and hence may be "runaways" from their birthplace. Thus, some isolated massive stars in the Galactic Center region might have been born in star clusters known in this region. However, no bow shock is detected around the isolated star WR102ka (Peony nebula star), which is one of the most massive and luminous stars in the Galaxy. This star is located at the center of an associated dusty circumstellar nebula. To study whether a star cluster may be "hidden" in the surroundings of WR102ka, to obtain new and better spectra of this star, and to measure its radial velocity, we obtained observations with the integral-field spectrograph SINFONI at the ESO's Very Large Telescope (VLT). Our observations confirm that WR102ka is one of the most massive stars in the Galaxy and reveal that this star is not associated with a star cluster. We suggest that WR102ka has been born in relative isolation, outside of any massive star cluster.
10 pages, 10 figures, MNRAS, in press
References in corpus (15)
- Evolution and fate of very massive stars
- The most massive stars in the Arches cluster
- The Galactic WC stars: Stellar parameters from spectral analyses indicate a new evolutionary sequence
- Neglecting the porosity of hot-star winds can lead to underestimating mass-loss rates
- The mmax-Mecl relation, the IMF and IGIMF: probabilistically sampled functions?
- On the Similarity between Cluster and Galactic Stellar Initial Mass Functions
- The VLT-FLAMES Tarantula Survey III: A very massive star in apparent isolation from the massive cluster R136
- VLT K-band spectroscopy of massive young stellar objects in (ultra-)compact HII regions
- Pinwheels in the Quintuplet Cluster
- The Quintuplet Cluster I. A K-band spectral catalog of stellar sources
- Two extremely luminous WN stars in the Galactic center with circumstellar emission from dust and gas
- The Quintuplet Cluster III. Hertzsprung-Russell diagram and cluster age
- The Quintuplet Cluster II. Analysis of the WN stars
- On the CO Near-IR Band and the Line Splitting Phenomenon in the Yellow Hypergiant Rho Cassiopeiae
- Metallicity distribution of red giants in the Inner Galaxy from Near Infrared spectra
Cited by in corpus (18)
- Wolf-Rayet stars in the Small Magellanic Cloud: I. Analysis of the single WN stars
- The Runaways and Isolated O-Type Star Spectroscopic Survey of the SMC (RIOTS4)
- Very Massive Stars: a metallicity-dependent upper-mass limit, slow winds, and the self-enrichment of Globular Clusters
- Characterizing star cluster formation with WISE: 652 newly found star clusters and candidates
- Isolated massive stars in the Galactic center: The dynamic contribution from the Arches and Quintuplet star clusters
- Multiple Star Systems in the Orion Nebula
- Observational properties of massive black hole binary progenitors
- The Wolf-Rayet stars in M31: I. Analysis of the late-type WN stars
- Constraining the population of isolated massive stars within the Central Molecular Zone
- The Tarantula Massive Binary Monitoring project: II. A first SB2 orbital and spectroscopic analysis for the Wolf-Rayet binary R145
- Luminous blue variables: An imaging perspective on their binarity and near environment
- Exploring the influence of different velocity fields on Wolf-Rayet star spectra
- A Search for In-Situ Field OB Star Formation in the Small Magellanic Cloud
- X-ray and Radio Observations of the Massive Star Forming Region IRAS 20126+4104
- Analysis of the WN star WR 102c, its WR nebula, and the associated cluster of massive stars in the Sickle Nebula
- The metallicity dependence of WR winds
- Near-Eddington mass loss of hydrogen-rich Wolf-Rayet stars
- EWOCS-IV: 1Ms ACIS Chandra observation of the supergiant B[e] star Wd1-9