Abstract
We present measurements of the oxygen abundance of the Milky Way's ISM by observing the K-shell X-ray photoionization edge toward galaxy clusters. This effect is most easily observed toward objects with Galactic columns ( n H ) of a few times 10 21 cm -2 . We measure X-ray column densities toward 11 clusters and find that at high Galactic columns above approximately 10 21 cm -2 the X-ray columns are generally 1.5-3.0 times greater than the 21 cm H I columns, indicating that molecular clouds become an important contributor to n H at higher columns. We find the average ISM oxygen abundance to be (O/H) = (4.85 ± 0.06) × 10 -4 , or 0.99 solar when using the most recent solar photospheric values. Since X-ray observations are sensitive to the total amount of oxygen present (gas+dust), these results indicate a high gas to dust ratio. Also, the oxygen abundances along lines of sight through high Galactic columns ( n H ) are the same as abundances through low columns, suggesting that the composition of denser clouds is similar to that of the more diffuse ISM.
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CITATION STYLE
Baumgartner, W. H., & Mushotzky, R. F. (2006). Oxygen Abundances in the Milky Way Using X‐Ray Absorption Measurements toward Galaxy Clusters. The Astrophysical Journal, 639(2), 929–940. https://doi.org/10.1086/499619
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