Properties of the molecular gas in the fast outflow in the Seyfert galaxy IC 5063
Tom Oosterloo, J. B. Raymond Oonk, Raffaella Morganti, Francoise, Combes, Kalliopi Dasyra, Philippe Salome', Nektarios Vlahakis, Clive, Tadhunter

TL;DR
This study investigates the properties of molecular gas in the fast outflow driven by the radio jet in Seyfert galaxy IC 5063, revealing high excitation temperatures, optically thin conditions, and a significant impact on the local interstellar medium.
Contribution
It provides detailed ALMA observations and modeling of the molecular outflow, demonstrating the jet's influence on gas excitation, density, and temperature, and supports jet-driven outflow models in a clumpy medium.
Findings
Outflow velocities up to 800 km/s with high excitation temperatures (30-55 K).
Molecular outflow mass estimated at 1.2 x 10^6 M_sun, possibly larger.
Outflow rate approximately 12 M_sun/yr, dominated by cold gas.
Abstract
We present a detailed study of the molecular gas in the fast AGN-driven outflow in the nearby radio-loud Seyfert galaxy IC 5063. Using ALMA observations of a number of tracers (12CO(1-0), 12CO(2-1), 12CO(3-2), 13CO(2-1) and HCO+(4-3)), we map the differences in excitation, density and temperature of the gas. The results show that in the immediate vicinity of the radio jet, a fast outflow, with velocities up to 800 km/s, is occurring of which the gas has high excitation temperatures in the range 30-55 K, demonstrating the direct impact of the jet on the ISM. The relative brightness of the CO lines show that the outflow is optically thin. We estimate the mass of the molecular outflow to be 1.2 x 10^6 Msol and likely to be a factor 2-3 larger. This is similar to that of the outflow of atomic gas, but much larger than that of the ionised outflow, showing that the outflow is dominated by…
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