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JWST/NIRSpec observations of Brown Dwarfs in the Orion Nebula Cluster

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posted on 2025-08-02, 13:06 authored by KL Luhman, CA de Oliveira, I Baraffe, G Chabrier, E Manjavacas, RJ Parker, P Tremblin
We have used the multiobject mode of the Near-Infrared Spectrograph (NIRSpec) on board the James Webb Space Telescope (JWST) to obtain low-resolution 1-5 μm spectra of 22 brown dwarf candidates in the Orion Nebula Cluster, which were selected with archival images from the Hubble Space Telescope. One of the targets was previously classified as a Herbig-Haro (HH) object and exhibits strong emission in H i, H2, and the fundamental band of CO, further demonstrating that HH objects can have bright emission in that CO band. The remaining targets have late spectral types (M6.5 to early L) and are young based on gravity-sensitive features, as expected for low-mass members of the cluster. According to theoretical evolutionary models, these objects should have masses that range from the hydrogen burning limit to 0.003-0.007 M ⊙. Two of the NIRSpec targets were identified as proplyds in earlier analysis of Hubble images. They have spectral types of M6.5 and M7.5, making them two of the coolest and least massive known proplyds. Another brown dwarf shows absorption bands at 3-5 μm from ices containing H2O, CO2, OCN−, and CO, indicating that it is either an edge-on class II system or a class I protostar. It is the coolest and least massive object that has detections of these ice features. In addition, it appears to be the first candidate for a protostellar brown dwarf that has spectroscopy confirming its late spectral type.

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ATMO 757858

European Research Council (ERC)

Royal Society

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© 2024. The Author(s). Open access. Published by the American Astronomical Society. Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.

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This is the final version. Available on open access from the American Astronomical Society via the DOI in this record.

Journal

The Astrophysical Journal

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American Astronomical Society

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  • Version of Record

Language

en

FCD date

2024-12-18T10:46:44Z

FOA date

2025-03-07T01:06:18Z

Citation

Vol. 975, No. 2, article 162

Department

  • Physics and Astronomy

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