Evidence for a chemically differentiated outflow in Mrk 231
arXiv:1512.04854 · doi:10.1051/0004-6361/201527457
Abstract
Aims: Our goal is to study the chemical composition of the outflows of active galactic nuclei and starburst galaxies. Methods: We obtained high-resolution interferometric observations of HCN and HCO and of the ultraluminous infrared galaxy Mrk~231 with the IRAM Plateau de Bure Interferometer. We also use previously published observations of HCN and HCO and , and HNC in the same source. Results: In the line wings of the HCN, HCO, and HNC emission, we find that these three molecular species exhibit features at distinct velocities which differ between the species. The features are not consistent with emission lines of other molecular species. Through radiative transfer modelling of the HCN and HCO outflow emission we find an average abundance ratio . Assuming a clumpy outflow, modelling of the HCN and HCO emission produces strongly inconsistent outflow masses. Conclusions: Both the anti-correlated outflow features of HCN and HCO and the different outflow masses calculated from the radiative transfer models of the HCN and HCO emission suggest that the outflow is chemically differentiated. The separation between HCN and HCO could be an indicator of shock fronts present in the outflow, since the HCN/HCO ratio is expected to be elevated in shocked regions. Our result shows that studies of the chemistry in large-scale galactic outflows can be used to better understand the physical properties of these outflows and their effects on the interstellar medium (ISM) in the galaxy.
12 pages, 8 figures, accepted for publication in A&A
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