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TRACING FUV RADIATION IN THE EMBEDDED PHASE OF STAR FORMATION.

Authors :
Benz, A. O.
Bruderer, S.
van Dishoeck, E. F.
Stäuber, P.
Wampfler, S. F.
Dedes, C.
Source :
EAS Publications Series. 2011, Vol. 52, p239-244. 6p.
Publication Year :
2011

Abstract

Molecules containing one or a few hydrogen atoms and a heavier atom (hydrides) have been predicted to trace FUV radiation. In some chemical models, FUV emission by the central object or protostar of a star forming region greatly enhances some of the hydride abundances. Two massive regions, W3 IRS5 and AFGL 2591, have been observed in hydride lines by HIFI onboard the Herschel Spce Observatory. We use published results as well as new observations of CH+ towards W3 IRS5. Molecular column densities are derived from ground state absorption lines, radiative transfer modeling or rotational diagrams. Models assuming no internal FUV are compared with two-dimensional models including FUV irradiation of outflow walls. We confirm that the effect of FUV is clearly noticeable and greatly improves the fit. The most sensitive molecules to FUV irradiation are CH+ and OH+, enhanced in abundance by many orders of magnitude. Modeling in addition also full line radiative transfer, Bruderer et al. (2010b) achieve good agreement of a two-dimensional FUV model with observations of CH+ in AFGL 2591. It is concluded that CH+ and OH+ are good FUV tracers in star-forming regions. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16334760
Volume :
52
Database :
Academic Search Index
Journal :
EAS Publications Series
Publication Type :
Academic Journal
Accession number :
102444914
Full Text :
https://doi.org/10.1051/eas/1152039