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  5. The Origin of [C II] 157 μm Emission in a Five-component Interstellar Medium: The Case of NGC 3184 and NGC 628
 

The Origin of [C II] 157 μm Emission in a Five-component Interstellar Medium: The Case of NGC 3184 and NGC 628

Journal
THE ASTROPHYSICAL JOURNAL  
Date Issued
2017
Author(s)
Abdullah, A.
•
Brandl, B. R.
•
Groves, B.
•
Wolfire, M.
•
Calzetti, D.
•
Croxall, K.
•
de Looze, I.
•
Kennicutt, R. C.
•
Sandstrom, K. M.
•
Armus, L.
•
Dale, D. A.
•
Galametz, M.
•
Herrera-Camus, R.
•
HUNT, Leslie Kipp  
•
Smith, J. D.
•
Tielens, A. G. G. M.
DOI
10.3847/1538-4357/aa6fa9
Abstract
With its relatively low ionization potential, C+ can be found throughout the interstellar medium (ISM) and provides one of the main cooling channels of the ISM via the [C II] 157 μm emission. While the strength of the [C II] line correlates with the star formation rate, the contributions of the various gas phases to the [C II] emission on galactic scales are not well established. In this study we establish an empirical multi-component model of the ISM, including dense H II regions, dense photon dissociation regions (PDRs), the warm ionized medium (WIM), low density and {G}0 surfaces of molecular clouds (SfMCs), and the cold neutral medium (CNM). We test our model on ten luminous regions within the two nearby galaxies NGC 3184 and NGC 628 on angular scales of 500-600 pc. Both galaxies are part of the Herschel key program KINGFISH, and are complemented by a large set of ancillary ground- and space-based data. The five modeled phases together reproduce the observed [C II] emission quite well, overpredicting the total flux slightly (about 45%) averaged over all regions. We find that dense PDRs are the dominating component, contributing 68% of the [C II] flux on average, followed by the WIM and the SfMCs, with mean contributions of about half of the contribution from dense PDRs, each. CNM and dense H II regions are only minor contributors with less than 5% each. These estimates are averaged over the selected regions, but the relative contributions of the various phases to the [C II] flux vary significantly between these regions.
Volume
842
Issue
1
Start page
4
Uri
http://hdl.handle.net/20.500.12386/26740
Url
https://iopscience.iop.org/article/10.3847/1538-4357/aa6fa9
Issn Identifier
0004-637X
Ads BibCode
2017ApJ...842....4A
Rights
open.access
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2017Abdullah_2017_ApJ_842_4.pdf

Description
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Size

1.93 MB

Format

Adobe PDF

Checksum (MD5)

2ee9aa5a16fbfd9ce7670ed4cd76634c

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