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Lyα vs. fundamental properties of galaxies

Published online by Cambridge University Press:  21 March 2013

Aida Wofford
Affiliation:
Space Telescope Science Institute, 3700 San Martin Drive, Baltimore, MD, 21218, USA email: wofford@stsci.edu, leitherer@stsci.edu
Claus Leitherer
Affiliation:
Space Telescope Science Institute, 3700 San Martin Drive, Baltimore, MD, 21218, USA email: wofford@stsci.edu, leitherer@stsci.edu
John Salzer
Affiliation:
Astronomy Dept. Indiana University, Swain West 408, 727 East Third Street, Bloomington, IN 47405, USA email: slaz@astro.indiana.edu
COS Science Team
Affiliation:
Center for Astrophysics and Space Astronomy, University of Colorado, 593 UCB Boulder, CO 80309-0593
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Abstract

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We obtained HST COS Lyα spectroscopy for 20 galaxies that were Hα-selected from the Kitt Peak International Spectroscopic Survey data release. We cover redshifts of z=0.02–0.06 and a broad range in metallicity, reddening, and luminosity. We investigate correlations between the properties of the Lyα-lines and fundamental properties of the galaxies. Our seven emitters have: equivalent widths in the range EW(Lyα)=1–12 Å, i.e., below the completeness limits of higher redshift studies; extinction corrected Lyα/Hα ratios of at most 12–15% of the case B recombination theory value; and O I λ1302 ISM absorptions blueshifted to 〈v(O I)〉= − 117±40 km/s, which are consistent with H I gas outflows. Six emitters have P-Cygni-like Lyα profiles with peaks redshifted to 〈v〉=172±25 km/s, and one of our face-on spiral galaxies has two Lyα peaks separated by 370 km/s. The latter peaks are such that the blueshifted peak is twice as strong as the redshifted peak. The rest of the galaxies show Lyα absorption troughs centered at 〈v〉=19 km/s and O I λ1302 absorptions centered at 〈v(O I)〉= − 34±25 km/s, which is consistent with static or low velocity H I gas. Our two most metal poor and least reddened galaxies, which have large Hα equivalent widths are absorbers. The spiral galaxies in our sample have Lyα in single emission, double emission, or absorption. There appears to be a correlation between the Hα derived SFR and the strength of the Lyα emission but our sample is small. Our observations cover regions of at most 3 kpc in diameter and may miss a significant fraction of the resonantly scattered Lyα emission. This work is supported by NASA grant N1317.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2013

References

Wofford, A., Leitherer, C., & Salzer, J., COS Science Team 2013, submitted to ApJGoogle Scholar