Excited OH+, H2O+, and H3O+ in NGC 4418 and Arp 220
E. Gonz\'alez-Alfonso, J. Fischer, S. Bruderer, H. S. P. M\"uller, J., Graci\'a-Carpio, E. Sturm, D. Lutz, A. Poglitsch, H. Feuchtgruber, S., Veilleux, A. Contursi, A. Sternberg, S. Hailey-Dunsheath, A. Verma, N., Christopher, R. Davies, R. Genzel, L. Tacconi

TL;DR
This study uses Herschel/PACS observations to analyze excited molecular ions OH+, H2O+, and H3O+ in the nuclear regions of NGC 4418 and Arp 220, revealing high radiation environments, ionization processes, and chemical pathways.
Contribution
First detection of excited OH+ and H2O+ lines in these galaxies, with detailed analysis of ionization rates and chemical models indicating dominant ionization sources.
Findings
Detection of excited OH+ and H2O+ lines indicating radiative pumping.
Estimated ionization rates exceeding 10^{-13} s^{-1} in the interclump medium.
X-ray ionization likely dominates in NGC 4418, while cosmic rays are significant in Arp 220.
Abstract
We report on Herschel/PACS observations of absorption lines of OH+, H2O+ and H3O+ in NGC 4418 and Arp 220. Excited lines of OH+ and H2O+ with E_lower of at least 285 and \sim200 K, respectively, are detected in both sources, indicating radiative pumping and location in the high radiation density environment of the nuclear regions. Abundance ratios OH+/H2O+ of 1-2.5 are estimated in the nuclei of both sources. The inferred OH+ column and abundance relative to H nuclei are (0.5-1)x10^{16} cm-2 and \sim2x10^{-8}, respectively. Additionally, in Arp 220, an extended low excitation component around the nuclear region is found to have OH+/H2O+\sim5-10. H3O+ is detected in both sources with N(H3O+)\sim(0.5-2)x10^{16} cm-2, and in Arp 220 the pure inversion, metastable lines indicate a high rotational temperature of ~500 K, indicative of formation pumping and/or hot gas. Simple chemical models…
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