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  Distributed Star Formation throughout the Galactic Center Cloud Sgr B2

Ginsburg, A., Bally, J., Barnes, A., Bastian, N., Battersby, C., Beuther, H., et al. (2018). Distributed Star Formation throughout the Galactic Center Cloud Sgr B2. The Astrophysical Journal, 853.

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https://ui.adsabs.harvard.edu/abs/2018ApJ...853..171G (beliebiger Volltext)
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 Urheber:
Ginsburg, Adam1, Autor
Bally, John1, Autor
Barnes, Ashley1, Autor
Bastian, Nate1, Autor
Battersby, Cara1, Autor
Beuther, Henrik1, Autor
Brogan, Crystal1, Autor
Contreras, Yanett1, Autor
Corby, Joanna1, Autor
Darling, Jeremy1, Autor
De Pree, Chris1, Autor
Galván-Madrid, Roberto1, Autor
Garay, Guido1, Autor
Henshaw, Jonathan1, Autor
Hunter, Todd1, Autor
Kruijssen, J. M. Diederik1, Autor
Longmore, Steven1, Autor
Lu, Xing1, Autor
Meng, Fanyi1, Autor
Mills, Elisabeth A. C.1, Autor
Ott, Juergen1, AutorPineda, Jaime E.1, AutorSánchez-Monge, Álvaro1, AutorSchilke, Peter1, AutorSchmiedeke, Anika1, AutorWalker, Daniel1, AutorWilner, David1, Autor mehr..
Affiliations:
1Max Planck Institute for Astronomy, Max Planck Society and Cooperation Partners, ou_2421692              

Inhalt

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Schlagwörter: galaxies: star formation H ii regions ISM: molecules stars: formation stars: protostars Astrophysics - Astrophysics of Galaxies
 Zusammenfassung: We report ALMA observations with resolution ≈0.″5 at 3 mm of the extended Sgr B2 cloud in the Central Molecular Zone (CMZ). We detect 271 compact sources, most of which are smaller than 5000 au. By ruling out alternative possibilities, we conclude that these sources consist of a mix of hypercompact H II regions and young stellar objects (YSOs). Most of the newly detected sources are YSOs with gas envelopes that, based on their luminosities, must contain objects with stellar masses {M}* ≳ 8 {M}. Their spatial distribution spread over a ̃12 × 3 pc region demonstrates that Sgr B2 is experiencing an extended star formation event, not just an isolated “starburst” within the protocluster regions. Using this new sample, we examine star formation thresholds and surface density relations in Sgr B2. While all of the YSOs reside in regions of high column density (N({{{H}}}2)≳ 2× {10}23 {cm}}-2), not all regions of high column density contain YSOs. The observed column density threshold for star formation is substantially higher than that in solar vicinity clouds, implying either that high-mass star formation requires a higher column density or that any star formation threshold in the CMZ must be higher than in nearby clouds. The relation between the surface density of gas and stars is incompatible with extrapolations from local clouds, and instead stellar densities in Sgr B2 follow a linear {{{Σ }}}* {--}{{{Σ }}}gas} relation, shallower than that observed in local clouds. Together, these points suggest that a higher volume density threshold is required to explain star formation in CMZ clouds.

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 Datum: 2018
 Publikationsstatus: Erschienen
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Titel: The Astrophysical Journal
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: -
Seiten: - Band / Heft: 853 Artikelnummer: - Start- / Endseite: - Identifikator: -