The relationships between AGN power and molecular gas mass within 500 pc of the center of elliptical galaxies
Yutaka Fujita, Takuma Izumi, Hiroshi Nagai, Nozomu Kawakatu, Norita, Kawanaka

TL;DR
This study investigates the link between molecular gas mass within 500 pc of elliptical galaxy centers and AGN power, revealing correlations with jet power and continuum luminosities, but not with black hole mass.
Contribution
It provides new observational evidence connecting molecular gas content to AGN activity levels within elliptical galaxies using ALMA data.
Findings
Molecular gas mass correlates with AGN jet power.
Molecular gas mass correlates with radio continuum luminosities.
No clear correlation between black hole mass and AGN power.
Abstract
The physical quantity that directly controls the feedback of active galactic nuclei (AGNs) in elliptical galaxies remains to be determined. The discovery of molecular gas around the AGNs suggests that the gas is fueling the AGNs. Therefore, we analyze Atacama Large Millimeter/submillimeter Array (ALMA) data for the CO line (J=1-0, 2-1, 3-2) emission and estimate the mass of molecular gas within 500 pc of the center of 12 non-central elliptical galaxies (NCEGs) and 10 of the brightest cluster galaxies (BCGs). We find that the mass (M_mol ~ 10^5-10^9 M_sun) is correlated with the jet power of their AGNs, which is represented by P_cav ~ 4.1x10^42 (M_mol/10^7 M_sun)^{1.3} erg s^{-1}, although NCEGs alone do not show the correlation. We also find that M_mol is correlated with the AGN continuum luminosities at ~ 1.4 GHz (L_1.4) and ~ 100-300 GHz (L_con). Since P_cav reflects galactic-scale,…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astrophysics and Star Formation Studies
