Near-infrared spectroscopy of embedded protostars in the massive metal-poor star-forming region NGC 346

Author:

Jones O C1ORCID,Reiter M12ORCID,Sanchez-Janssen R1ORCID,Evans C J13,Robertson C S4,Meixner M5,Ochsendorf B6

Affiliation:

1. UK Astronomy Technology Centre, Royal Observatory , Blackford Hill, Edinburgh EH9 3HJ, UK

2. European Southern Observatory , Karl-Schwarzschild-Strasse 2, D-85748 Garching bei München, Germany

3. European Space Agency (ESA), ESA Office, Space Telescope Science Institute , 3700 San Martin Drive, Baltimore, MD 21218, USA

4. Institute for Astronomy, University of Edinburgh , Blackford Hill, Edinburgh EH9 3HJ, UK

5. SOFIA-USRA, NASA Ames Research Center , MS 232-12, Moffett Field, CA 94035, USA

6. Department of Physics and Astronomy, Johns Hopkins University , 3400 North Charles Street, Baltimore, MD 21218, USA

Abstract

ABSTRACT We present medium-resolution (R ∼ 4000) YJ-, H-, and K-band spectroscopy of candidate young stellar objects (YSOs) in NGC 346, the most active star-formation region in the metal-poor (Z = 1/5 Z⊙) Small Magellanic Cloud. The spectra were obtained with the KMOS (K-Band Multi-Object Spectrograph) integral field instrument on the Very Large Telescope. From our initial sample of 18 candidate high-mass YSOs previously identified from mid-IR photometry and radiative transfer model fits to their spectral energy distributions, approximately half were resolved into multiple components by our integral-field data. In total, we detect 30 continuum sources and extract reliable spectra for 12 of these objects. The spectra show various features including hydrogen recombination lines, and lines from H2, He i, and [Fe ii], which are indicative of accretion, discs, and outflowing material in massive YSOs. We spectroscopically confirm the youthful nature of nine YSO candidates, and identify two others as OB stars. All of the confirmed YSOs have Br γ in emission, but no emission is seen from the CO bandhead, despite other disc tracers present in the spectra. He i 1.083 $\mu$m emission is also detected at appreciably higher rates than for the Galaxy.

Funder

Horizon 2020

STFC

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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