Precise physical conditions for the warm gas outflows in the nearby active galaxy IC 5063
arXiv:2301.03999 · doi:10.1093/mnras/stad123
Abstract
AGN-driven outflows are now routinely used in models of galaxy evolution as a feedback mechanism, however many of their properties remain highly uncertain. Perhaps the greatest source of uncertainty is the electron density of the outflowing gas, which directly affects derived kinetic powers and mass outflow rates. Here we present spatially-resolved, wide spectral-coverage Xshooter observations of the nearby active galaxy IC 5063 (z=0.001131), which shows clear signatures of outflows being driven by shocks induced by a radio jet interacting with the ISM. For the first time, we use the higher critical-density transauroral [SII] and [OII] lines to derive electron densities in spatially-resolved observations of an active galaxy, and present evidence that the lines are emitted in the same spatial regions as other key diagnostic lines. In addition, we find that the post-shock gas is denser than the pre-shock gas, possibly due to shock compression effects. We derive kinetic powers for the warm ionised outflow phase and find them to be below those required by galaxy evolution models; however, other studies of different gas phases in IC 5063 allow us to place our results in a wider context in which the cooler gas phases constitute most of the outflowing mass. We investigate the dominant ionisation and excitation mechanisms and find that the warm ionised outflow phase is dominated by AGN-photoionisation, while the warm molecular phase has composite AGN-shock excitation. Overall, our results highlight the importance of robust outflow diagnostics and reinforce the utility of the transauroral lines for future studies of outflows in active galaxies.
25 pages, 24 figures, accepted for publication in MNRAS
References in corpus (19)
- Array Programming with NumPy
- The MAPPINGS III Library of Fast Radiative Shock Models
- Molecfit: A general tool for telluric absorption correction. I. Method and application to ESO instruments
- Kiloparsec-scale outflows are prevalent among luminous AGN: outflows and feedback in the context of the overall AGN population
- Molecfit: A general tool for telluric absorption correction II. Quantitative evaluation on ESO-VLT X-Shooter spectra
- Extreme gas kinematics in the z=2.2 powerful radio galaxy MRC1138-262: Evidence for efficient AGN feedback in the early Universe?
- Jet acceleration of the fast molecular outflows in the Seyfert galaxy IC5063
- MAGNUM survey: Compact jets causing large turmoil in galaxies -- Enhanced line widths perpendicular to radio jets as tracers of jet-ISM interaction
- Discovering AGN-driven winds through their infrared emission: II. Mass outflow rate and energetics
- Variation of galactic cold gas reservoirs with stellar mass
- IC5063: AGN driven outflow of warm and cold gas
- Quantifying the AGN-driven outflows in ULIRGs (QUADROS) I: VLT/Xshooter observations of 9 nearby objects
- Properties of the molecular gas in the fast outflow in the Seyfert galaxy IC 5063
- ALMA reveals optically thin, highly excited CO gas in the jet-driven winds of the galaxy IC5063
- Sizes and Kinematics of Extended Narrow-Line Regions in Luminous Obscured AGN Selected by Broadband Images
- Understanding the two-dimensional ionization structure in luminous infrared galaxies. A near-IR integral field spectroscopy perspective
- Gemini NIFS survey of feeding and feedback in nearby Active Galaxies -- IV. Excitation
- High resolution spectroscopy of the extended narrow-line region of IC 5063 and NGC 7212
- The extent of ionization in simulations of radio-loud AGNs impacting kpc gas discs