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Exploring Infrared Properties of Giant Low Surface Brightness Galaxies

Astrophysics 2009-06-23 v1

Abstract

Abridged: We present analysis of Spitzer Space Telescope observations of the three low surface brightness (LSB) optical giant galaxies Malin 1, UGC 6614 and UGC 9024. Mid- and far-infrared morphology, spectral energy distributions, and integrated colors are used to derive the dust mass, dust-to-gas mass ratio, total infrared luminosity, and star formation rate (SFR). The 8 micron images indicate that polycyclic aromatic hydrocarbon molecules are present in the central regions of all three metal-poor LSB galaxies. The diffuse optical disks of Malin 1 and UGC 9024 remain undetected at mid- and far-infrared wavelengths. The dustiest of the three LSB galaxies, UGC 6614, has infrared morphology that varies significantly with wavelength. The 8 and 24 micron emission is co-spatial with H\alpha emission previously observed in the outer ring of UGC 6614. The estimated dust-to-gas ratios, from less than 10^{-3} to 10^{-2}, support previous indications that the LSB galaxies are relatively dust poor compared to the HSB galaxies. The total infrared luminosities are approximately 1/3 to 1/2 the blue band luminosities, suggesting that old stellar populations are the primary source of dust heating in these LSB objects. The SFR estimated from the infrared data ranges ~0.01-0.88 M_sun yr^{-1}, consistent with results from optical studies.

Keywords

Cite

@article{arxiv.0704.1483,
  title  = {Exploring Infrared Properties of Giant Low Surface Brightness Galaxies},
  author = {Nurur Rahman and Justin H. Howell and George Helou and Joseph M. Mazzarella and Brent Buckalew},
  journal= {arXiv preprint arXiv:0704.1483},
  year   = {2009}
}

Comments

Accepted in ApJ (2007, July 20 issue), 34 pages, 10 postscript figures, 2 tables