Multi-phase feedback processes in the Sy2 galaxy NGC 5643
I. Garc\'ia-Bernete (1), A. Alonso-Herrero (2), S. Garc\'ia-Burillo, (3), M. Pereira-Santaella (4), B. Garc\'ia-Lorenzo (5, 6), F. J. Carrera, (7), D. Rigopoulou (1), C. Ramos Almeida (5,6), M. Villar Mart\'in (4), O., Gonz\'alez-Mart\'in (8), E. K. S. Hicks (9), A. Labiano (2)

TL;DR
This study investigates multi-phase AGN feedback in NGC 5643, revealing that molecular and ionized gas outflows are driven by the AGN wind, with implications for galaxy evolution and feedback mechanisms.
Contribution
It provides new insights into the coexistence and interaction of molecular and ionized outflows driven by AGN feedback in a Seyfert 2 galaxy.
Findings
Molecular outflow dominates mass and rate but is not momentum conserving.
Ionized outflow reaches higher velocities near the AGN.
Molecular gas content varies between galaxy arms, indicating AGN impact.
Abstract
We study the multi-phase feedback processes in the central ~3 kpc of the barred Sy 2 galaxy NGC 5643. We use observations of the cold molecular gas (ALMA CO(2-1)) and ionized gas (MUSE IFU). We study different regions along the outflow zone which extends out to ~2.3 kpc in the same direction (east-west) as the radio jet, as well as nuclear/circumnuclear regions in the host galaxy disk. The deprojected outflowing velocities of the cold molecular gas (median Vcentral~189 km s^-1) are generally lower than those of the outflowing ionized gas, which reach deprojected velocities of up to 750 km s^-1 close to the AGN, and their spatial profiles follow those of the ionized phase. This suggests that the outflowing molecular gas in the galaxy disk is being entrained by the AGN wind. We derive molecular and ionized outflow masses of ~5.2x10^7 Msun and 8.5x10^4 Msun and molecular and ionized…
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