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Dust and Diffuse Interstellar Bands in theza= 0.524 Absorption System toward AO 0235+164

2004/07/14 by V. T. Junkkarinen, Ross D. Cohen, R. D. Cohen +5 · 2 citations
Physics and Astronomy · #Astrophysics and Star Formation Studies #Galaxies: Formation, Evolution, Phenomena #Stellar, planetary, and galactic studies #astro-ph

paper · pdf · doi:10.1086/423777

published as Astrophys.J. 614 (2004) 658-670 · 39 pages, 8 figures, accepted for publication in ApJ

arxiv created 2004/07/14 · openalex publication_date 2004/10/20 · arxiv updated 2009/12/01 · openalex created_date 2016/06/24 · openalex updated_date 2026/07/31

Abstract

We present new Hubble Space Telescope ( HST ) Space Telescope Imaging Spectrograph (STIS) NUV-MAMA and STIS CCD observations of the BL Lac object AO 0235+164 and the intervening damped Lyα (DLA) line at z a = 0.524. The line profile gives N (H ) = × 10 21 cm -2 and, combined with the H I 21 cm absorption data, leads to a spin temperature of T s = 220 ± 60 K. Those spectra also show a strong, broad feature at the expected position of the 2175 Å graphitic dust feature at z a = 0.524. Assuming a Galactic-type dust extinction curve at z a = 0.524 gives a dust-to-gas ratio of 0.19 times the Galactic value, but the fit, assuming that the underlying, unreddened spectrum is a single power law, is poor in the far-UV. A dust-to-gas ratio of 0.19 times the Galactic value is similar to the LMC, but the AO 0235+164 spectrum does not fit either the LMC extinction curve or the SMC extinction curve (which has practically no 2175 Å feature). A possible interpretation includes dust similar to that in the Galaxy, but with fewer of the small particles that produce the far-UV extinction. The metallicity of the z a = 0.524 absorber, estimated from the observed N (H ) and excess X-ray absorption (beyond Galactic) derived from contemporaneous and archival ASCA and ROSAT X-ray data, is Z = 0.72 ± 0.28 Z ☉ , implying in turn a dust-to-metals ratio of 0.27 times the Galactic value. If the dust mass density is the same in the z a = 0.524 DLA system as in our Galaxy, only 14% (±6%) of the metals (by mass) are in dust, compared to 51%, 36%, and 46% for the Galaxy, LMC, and SMC, respectively. Such a dusty z a = 0.524 AO 0235+164 absorption system is a good example of the kind of DLA system that will be missed because of selection effects, which in turn can bias the measurement of the comoving density of interstellar gas (in units of the closure density), Ω g , as a function of z .

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