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  HAWC+/SOFIA Multiwavelength Polarimetric Observations of OMC-1

Chuss, D. T., Andersson, B.-.-G., Bally, J., Dotson, J. L., Dowell, C. D., Guerra, J. A., et al. (2019). HAWC+/SOFIA Multiwavelength Polarimetric Observations of OMC-1. The Astrophysical Journal, 872.

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https://ui.adsabs.harvard.edu/abs/2019ApJ...872..187C (beliebiger Volltext)
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 Urheber:
Chuss, David T.1, Autor
Andersson, B. -G.1, Autor
Bally, John1, Autor
Dotson, Jessie L.1, Autor
Dowell, C. Darren1, Autor
Guerra, Jordan A.1, Autor
Harper, Doyal A.1, Autor
Houde, Martin1, Autor
Jones, Terry Jay1, Autor
Lazarian, A.1, Autor
Lopez Rodriguez, Enrique1, Autor
Michail, Joseph M.1, Autor
Morris, Mark R.1, Autor
Novak, Giles1, Autor
Siah, Javad1, Autor
Staguhn, Johannes1, Autor
Vaillancourt, John E.1, Autor
Volpert, C. G.1, Autor
Werner, Michael1, Autor
Wollack, Edward J.1, Autor
Benford, Dominic J.1, AutorBerthoud, Marc1, AutorCox, Erin G.1, AutorCrutcher, Richard1, AutorDale, Daniel A.1, AutorFissel, L. M.1, AutorGoldsmith, Paul F.1, AutorHamilton, Ryan T.1, AutorHanany, Shaul1, AutorHenning, Thomas K.1, AutorLooney, Leslie W.1, AutorMoseley, S. Harvey1, AutorSantos, Fabio P.1, AutorStephens, Ian1, AutorTassis, Konstantinos1, AutorTrinh, Christopher Q.1, AutorVan Camp, Eric1, AutorWard-Thompson, Derek1, AutorTeam, HAWC + Science1, Autor mehr..
Affiliations:
1Max Planck Institute for Astronomy, Max Planck Society and Cooperation Partners, ou_2421692              

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Schlagwörter: ISM: clouds ISM: magnetic fields stars: formation Astrophysics - Astrophysics of Galaxies
 Zusammenfassung: We report new polarimetric and photometric maps of the massive star- forming region OMC-1 using the HAWC+ instrument on the Stratospheric Observatory for Infrared Astronomy. We present continuum polarimetric and photometric measurements of this region at 53, 89, 154, and 214 Œºm at angular resolutions of 5‚Ä≥, 8‚Ä≥, 14‚Ä≥, and 19‚Ä≥ for the four bands, respectively. The photometric maps enable the computation of improved spectral energy distributions for the region. We find that at the longer wavelengths, the inferred magnetic field configuration matches the ‚Äúhourglass‚Äù configuration seen in previous studies, indicating magnetically regulated star formation. The field morphology differs at the shorter wavelengths. The magnetic field inferred at these wavelengths traces the bipolar structure of the explosive Becklin- Neugebauer/Kleinman-Low outflow emerging from OMC-1 behind the Orion Nebula. Using statistical methods to estimate the field strength in the region, we find that the explosion dominates the magnetic field near the center of the feature. Farther out, the magnetic field is close to energetic equilibrium with the ejecta and may be providing confinement to the explosion. The correlation between polarization fraction and the local polarization angle dispersion indicates that the depolarization as a function of unpolarized intensity is a result of intrinsic field geometry as opposed to decreases in grain alignment efficiency in denser regions.

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 Datum: 2019
 Publikationsstatus: Erschienen
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Titel: The Astrophysical Journal
Genre der Quelle: Zeitschrift
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Seiten: - Band / Heft: 872 Artikelnummer: - Start- / Endseite: - Identifikator: -