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Gas-phase metallicity for the Seyfert galaxy NGC 7130
DOI:10.1051/0004-6361/202451168.png)
Abstract
En 中文
Metallicity measurements in galaxies can provide valuable clues about galaxy evolution. One of the mechanisms postulated for metallicity redistribution in galaxies is gas flows induced by active galactic nuclei (AGNs), but the details of this process remain elusive. We report the discovery of a positive radial gradient in the gas-phase metallicity of the narrow-line region of the Seyfert 2 galaxy NGC 7130, which is not found when considering the star-forming (SF) components in the galaxy disc. To determine gas-phase metallicities for each kinematic component, we used both AGN and SF strong-line abundance relations, as well as Baldwin-Phillips-Terlevich diagnostic diagrams. These relations involve sensitive strong emission lines, namely [O III]lambda 5007, [N II]lambda 6584, H alpha, H beta, [S II]lambda 6716, and [S II]lambda 6731, observed with the adaptive-optics-assisted mode of the Multi Unit Spectroscopic Explorer at the Very Large Telescope. The presence of a positive radial metallicity gradient in only the ionised AGN component suggests that metals may be transported from central areas of a galaxy to its purlieus by AGN activity.
Keywords:
galaxies: abundances
galaxies: active
galaxies: evolution
galaxies: ISM
galaxies: nuclei
galaxies: Seyfert
Journal
IF:
5.8
Papers:
5.0W
Citations:
18.3W

