The ionization rates of galactic nuclei and disks from Herschel/HIFI observations of water and its associated ions
Floris van der Tak (SRON / U Groningen), Axel Weiss, Lijie Liu, Rolf, Guesten (MPIfR Bonn)

TL;DR
This study uses Herschel/HIFI observations of water and related ions in five nearby galaxies to analyze ionization rates and gas phases, revealing that these lines mainly probe non-nuclear disk gas with lower ionization than galactic centers.
Contribution
It provides the first detailed analysis of water and ionized water lines in multiple galaxies, estimating ionization rates and gas properties in galactic disks versus nuclei.
Findings
Ionization rates in galaxy disks are similar to the Milky Way's disk (~3x10^-16 s^-1).
Ground-state water lines mainly probe diffuse, non-nuclear gas.
Ionization decreases by about a factor of 10 from galaxy nuclei to disks.
Abstract
(Abridged) We present Herschel/HIFI spectra of the H2O 1113 GHz and H2O+ 1115 GHz lines toward five nearby prototypical starburst/AGN systems, and OH+ 971 GHz spectra toward three of these. The beam size of 20" corresponds to resolutions between 0.35 and 7 kpc. The observed line profiles range from pure absorption (NGC 4945, M82) to P-Cygni indicating outflow (NGC 253, Arp 220) and inverse P-Cygni indicating infall (Cen A). The similarity of the H2O, OH+, and H2O+ profiles to each other and to HI indicates that diffuse and dense gas phases are well mixed. We estimate column densities assuming negligible excitation (for absorption features) and using a non-LTE model (for emission features), adopting calculated collision data for H2O and OH+, and rough estimates for H2O+. Column densities range from ~10^13 to ~10^15 cm^-2 for each species, and are similar between absorption and emission…
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