Hydrogen recombination near-infrared line mapping of Centaurus A with IRSF/SIRIUS

Abstract Centaurus A (Cen A) is one of the most famous galaxies hosting an active galactic nucleus (AGN), where the interaction between AGN activities and surrounding interstellar and intergalactic media has been investigated. Recent studies reported detections of Hα emission from clouds in the gala...

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Veröffentlicht in:Publications of the Astronomical Society of Japan 2020-10, Vol.72 (5)
Hauptverfasser: Katayama, Risako, Kaneda, Hidehiro, Kokusho, Takuma, Morihana, Kumiko, Suzuki, Toyoaki, Oyabu, Shinki, Yamagishi, Mitsuyoshi, Tsuchikawa, Takuro
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Sprache:eng
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Zusammenfassung:Abstract Centaurus A (Cen A) is one of the most famous galaxies hosting an active galactic nucleus (AGN), where the interaction between AGN activities and surrounding interstellar and intergalactic media has been investigated. Recent studies reported detections of Hα emission from clouds in the galactic halo toward the northeast and southwest of the nucleus of Cen A, suggesting that AGN jets may have triggered star formation there. We performed near-infrared line mapping of Cen A with the IRSF 1.4 m telescope, using the narrow-band filter tuned for Paβ, from which we find that Paβ emission is not detected significantly from either of the northeast or southwest regions. The upper limit of the Paβ/Hα ratio in the northeast region is compatible with that expected for a typical H ii region, in line with the scenario that AGNs have triggered star formation there. On the other hand, the upper limit of Paβ/Hα in the southwest region is significantly lower than that expected for a typical H ii region. A possible explanation of the low Paβ/Hα ratio in the southwest region is the scattering of Hα and Paβ photons from the center of Cen A by dust grains in the halo clouds. From the upper limit of Paβ/Hα in the southwest region, we obtain constraints on the dust size distribution, which is found to be compatible with those seen in the interstellar medium of our Galaxy.
ISSN:0004-6264
2053-051X
DOI:10.1093/pasj/psaa081