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Abstract
We present infrared spectroscopy from the Spitzer Space Telescope at one disk position and two positions at a height of 1 kpc from the disk in the edge-on spiral NGC 891, with the primary goal of studying halo ionization. Our main result is that the [Ne III]/[Ne II] ratio, which provides a measure of the hardness of the ionizing spectrum free from the major problems plaguing optical line ratios, is enhanced in the extraplanar pointings relative to the disk pointing. Using a 2D MonteCarlo-based photoionization code that accounts for the effects of radiation field hardening, we find that this trend cannot be reproduced by any plausible photoionization model and that a secondary source of ionization must therefore operate in gaseous halos. We also present the first spectroscopic detections of extraplanar PAH features in an external normal galaxy. If they are in an exponential layer, very rough emission scale heights of 330-530 pc are implied for the various features. Extinction may be nonnegligible in the midplane and reduce these scale heights significantly. There is little significant variation in the relative emission from the various features between disk and extraplanar environment. Only the 17.4 mu m feature is significantly enhanced in the extraplanar gas compared to the other features, possibly indicating a preference for larger PAHs in the halo.
Original language | English |
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Pages (from-to) | 263-275 |
Number of pages | 13 |
Journal | Astrophysical Journal |
Volume | 680 |
DOIs | |
Publication status | Published - 10 Jun 2008 |
Keywords
- galaxies : individual (NGC 891)
- galaxies : ISM
- galaxies : spiral
- methods : numerical
- POLYCYCLIC AROMATIC-HYDROCARBONS
- EDGE-ON GALAXIES
- MULTIPHASE GASEOUS HALOS
- SPITZER-SPACE-TELESCOPE
- NGC 891
- INTERSTELLAR-MEDIUM
- H-ALPHA
- STAR-FORMATION
- EMISSION-LINE
- OPTICAL SPECTROSCOPY
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Dive into the research topics of 'Infrared spectroscopy of the diffuse ionized halo of NGC 891'. Together they form a unique fingerprint.Projects
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Astrophysics at St Andrews: Astrophysics at St.Andrews
Cameron, A. C. (PI) & Horne, K. D. (CoI)
1/04/06 → 31/03/11
Project: Standard