Carbonates and ices in the galaxy-absorber towards PKS 1830-211 and within star-forming regions of the Milky Way
arXiv:2307.09586 · doi:10.1093/mnras/stad1928
Abstract
A pair of 6.0 and 6.9 m absorption features are frequently observed in Milky-Way (MW) molecular-clouds and YSOs; they also occur in the rest-frame of a molecule-rich spiral galaxy obscuring blazar PKS 1830-211. I calibrate -fitting methods which match observations with two or three laboratory spectra. The 6.0-m component is dominated by HO ice, as expected. Included MW sources were selected using opacity criteria which limit the range of explored HO-ice column densities to 1.6-- molecules cm, while the HO-ice density in the galaxy absorber is molecules cm. CHOH ice and / or small (< 0.1-m-sized) Ca- and Mg-bearing carbonates contribute at 6.9 m. The 41 % CHOH : HO molecular ratio in the PKS 1830-211 absorber is significantly higher than in the molecular cloud towards Taurus-Elias 16 (<7.5 %) and similar to the highest value in MW YSOs (35 % in AFGL 989). Fitted carbonate (-CO) : HO ratios in the galaxy absorber of 0.091 % are low in comparison to most of the ratios detected in the MW sample (0.2 - 0.4 %; % in AFGL 989). Inorganic carbonates could explain the increased oxygen depletion at the diffuse-medium-to-molecular-cloud transition which Jones \& Ysard associated with unobserved organic carbonates or materials with a C:O ratio of 1:3.
14 pages, 7 figures. Accepted June 22 2023. version before copy editing
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