Molecular gas in the northern nucleus of Mrk273: Physical and chemical properties of the disk and its outflow
R. Aladro (1, 2), S. K\"onig (2), S. Aalto (2), E., Gonz\'alez-Alfonso (3), N. Falstad (2), S. Mart\'in (4, 5), S. Muller (2),, S. Garc\'ia-Burillo (6), C. Henkel (1, 7), P. van der Werf (8), E. Mills, (9), J. Fischer (10), F. Costagliola (2), and M. Krips (11). ((1)

TL;DR
This study characterizes the molecular gas properties and outflow dynamics in the northern nucleus of Mrk273, revealing complex kinematics, a powerful AGN-driven outflow, and unique chemical signatures in dense gas tracers.
Contribution
It provides detailed imaging and modeling of molecular gas and outflow properties in Mrk273's nucleus, highlighting the role of the AGN in driving the outflow and its chemical impact.
Findings
Inner disk contains dense, warm gas with a dynamical mass of (4-5)x10^9 M_sun.
Outflow reaches velocities up to 1000 km/s and extends 460 pc from the center.
The outflow is likely powered by the AGN, not starburst activity.
Abstract
Aiming to characterise the properties of the molecular gas in the ultraluminous infrared galaxy Mrk273 and its outflow, we used the NOEMA interferometer to image the dense gas molecular tracers HCN, HCO+, HNC, HOC+ and HC3N at 86GHz and 256GHz with angular resolutions of 4.9x4.5 arcsec (3.7x3.4 kpc) and 0.61x0.55 arcsec (460x420 pc). We also modelled the flux of several H2O lines observed with Herschel using a radiative transfer code that includes excitation by collisions as well as by far-infrared photons. The disk of the Mrk273 north nucleus has two components with decoupled kinematics. The gas in the outer parts (1.5 kpc) rotates with a south-east to north-west direction, while in the inner disk (300 pc) follows a north-east to south-west rotation. The central 300 pc, which hosts a compact starburst region, is filled with dense and warm gas, contains a dynamical mass of…
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