Massive young stellar objects in 30 Doradus Virtual Observatory Resource

Authors
  1. van Gelder M.L.
  2. Kaper L.
  3. Japelj J.
  4. Ramirez-Tannus M.C.
  5. Ellerbroek L.E.,Barba R.H.
  6. Bestenlehner J.M.
  7. Bik A.
  8. Graefener G.
  9. de Koter A.,de Mink S.E.
  10. Sabbi E.
  11. Sana H.
  12. Sewilo M.
  13. Vink J.S.
  14. Walborn N.R.
  15. Published by
    CDS
Abstract

The process of massive star (M>=8M_{sun}_) formation is still poorly understood. Observations of massive young stellar objects (MYSOs) are challenging due to their rarity, short formation timescale, large distances, and high circumstellar extinction. Here, we present the results of a spectroscopic analysis of a population of MYSOs in the Large Magellanic Cloud (LMC). We took advantage of the spectral resolution and wavelength coverage of X-shooter (300-2500nm), which is mounted on the European Southern Observatory Very Large Telescope, to detect characteristic spectral features in a dozen MYSO candidates near 30 Doradus, the largest starburst region in the Local Group hosting the most massive stars known. The X-shooter spectra are strongly contaminated by nebular emission. We used a scaling method to subtract the nebular contamination from our objects. We detect H{alpha},{beta}, [OI] 630.0nm, CaII infrared triplet, [FeII] 1643.5nm, fluorescent FeII 1687.8nm, H_2_ 2121.8nm, Br{gamma}, and CO bandhead emission in the spectra of multiple candidates. This leads to the spectroscopic confirmation of ten candidates as bona fide MYSOs. We compared our observations with photometric observations from the literature and find all MYSOs to have a strong near-infrared excess. We computed lower limits to the brightness and luminosity of the MYSO candidates, confirming the near-infrared excess and the massive nature of the objects. No clear correlation is seen between the Br_gamma luminosity and metallicity. Combining our sample with other LMC samples results in a combined detection rate of disk features such as fluorescent Fe II and CO bandheads which is consistent with the Galactic rate (40%). Most of our MYSOs show outflow features.

Keywords
  1. pre-main-sequence-stars
  2. young-stellar-objects
  3. ob-stars
  4. spectroscopy
Bibliographic source Bibcode
2020A&A...636A..54V
See also HTML
https://cdsarc.cds.unistra.fr/viz-bin/cat/J/A+A/636/A54
IVOA Identifier IVOID
ivo://CDS.VizieR/J/A+A/636/A54
Document Object Identifer DOI
doi:10.26093/cds/vizier.36360054

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History

2020-04-17T07:47:19Z
Resource record created
2020-04-17T07:47:19Z
Created
2020-08-21T09:16:46Z
Updated

Contact

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CDS support team
Postal Address
CDS, Observatoire de Strasbourg, 11 rue de l'Universite, F-67000 Strasbourg, France
E-Mail
cds-question@unistra.fr