Infrared Emission of Normal Galaxies from 2.5 to 12 Micron:Infrared Space ObservatorySpectra, Near‐Infrared Continuum, and Mid‐Infrared Emission Features
- 1 May 2003
- journal article
- Published by American Astronomical Society in The Astrophysical Journal
- Vol. 588 (1) , 199-217
- https://doi.org/10.1086/374043
Abstract
We present ISO-PHOT spectra of the regions 2.5-4.9um and 5.8-11.6um for a sample of 45 disk galaxies from the U.S. ISO Key Project on Normal Galaxies. The spectra can be decomposed into three spectral components: (1) continuum emission from stellar photospheres, which dominates the near-infrared (2.5- 4.9um; NIR) spectral region; (2) a weak NIR excess continuum, which has a color temperature of ~ 1000K, carries a luminosity of a few percent of the total far-infrared luminosity L(FIR), and most likely arises from the ISM; and (3) the well-known broad emission features at 6.2, 7.7, 8.6 and 11.3 um, which are generally attributed to aromatic carbon particles. These aromatic features in emission (AFEs) dominate the mid-infrared (5.8-11.6 um; MIR) part of the spectrum, and resemble the so-called Type-A spectra observed in many non-stellar sources and the diffuse ISM in our own Galaxy. The relative strengths of the AFEs vary by 15-25% among the galaxies. However, little correlation is seen between these variations and either IRAS 60um-to-100um flux density ratio R(60/100) or the FIR-to-blue luminosity ratio L(FIR)/L(B), suggesting that the observed variations are not a direct consequence of the radiation field differences among the galaxies. We demonstrate that the NIR excess continuum and AFE emission are correlated, suggesting that they are produced by similar mechanisms and similar (or the same) material. On the other hand, as the current star-formation activity increases, the overall strengths of the AFEs and the NIR excess continuum drop significantly with respect to that of the far-infrared emission from large dust grains. This is likely a consequence of the preferential destruction in intense radiation fields of the small carriers responsible for the NIR/AFE emission.Comment: With 8 tables and 12 figures; to appear in the Astrophysical JournaKeywords
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This publication has 67 references indexed in Scilit:
- Mid‐Infrared Observation of Mass Loss in Elliptical GalaxiesThe Astrophysical Journal, 2002
- The Distribution of Mid- and Far-Infrared Emission in 10 Interacting Galaxy SystemsThe Astronomical Journal, 1998
- The photoelectric heating mechanism for very small graphitic grains and polycyclic aromatic hydrocarbonsThe Astrophysical Journal, 1994
- Spectral evolution of stellar populations using isochrone synthesisThe Astrophysical Journal, 1993
- Variations in the abundance of transiently heated particles within nearby molecular cloudsThe Astrophysical Journal, 1990
- Interstellar polycyclic aromatic hydrocarbons - The infrared emission bands, the excitation/emission mechanism, and the astrophysical implicationsThe Astrophysical Journal Supplement Series, 1989
- Spectra of the two brightest objects in the amorphous galaxy NGC 1569 - Superluminous young star clusters-or stars in a nearby peculiar galaxy?The Astronomical Journal, 1985
- Polycyclic aromatic hydrocarbons and the unidentified infrared emission bands - Auto exhaust along the Milky WayThe Astrophysical Journal, 1985
- Extragalactic Radio JetsAnnual Review of Astronomy and Astrophysics, 1984
- Observations of NGC 7027 from 5.2 to 7.5 microns - The detection of NI II and additional dust featuresThe Astrophysical Journal, 1983