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Hubble Space Telescope Observations of the CfA Seyfert 2 Galaxies: Near-Infrared Surface Photometry and Nuclear Bars*

机译:哈勃太空望远镜对CfA Seyfert 2星系的观察:近红外表面光度法和核棒*

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We present near-infrared J and H surface photometry of 24 of the nearby Seyfert 1.8, 1.9, and 2 galaxies from the CfA Seyfert sample. The excellent angular resolution of the Hubble Space Telescope probes spatial scales as small as tens of parsecs in most of these active galactic nuclei (AGNs) and is sensitive to the presence of nuclear bars and other potential signatures of the AGN fueling process that channels host galaxy gas and dust to the nuclear region. We have used elliptical isophote techniques to search for nuclear bars in all of these galaxies and have employed a two-dimensional fitting technique to model the nuclear point source and surface brightness distribution of a bright subsample of these galaxies in an attempt to alleviate the impact of the nuclear point source on our sensitivity to nuclear bars. We find stellar nuclear bar candidates in four of these galaxies: Mrk 471, Mrk 270, Mrk 573, and NGC 5929, nearly 20% of the total sample. The percentage rises to ~30% when systems with disturbed morphologies or high inclinations are excluded. The nuclear bars in Mrk 573 and Mrk 270 exhibit some evidence for dust lanes along their leading edges, analogous to the structures seen in host galaxy bars, while the dust lanes in Mrk 471 and NGC 5929 exhibit a more complex morphology. The fact that most of these AGNs do not appear to contain stellar nuclear bars suggests that they are not the fueling mechanism for most low-luminosity AGNs.
机译:我们介绍了来自CfA Seyfert样本的附近Seyfert 1.8、1.9和2个星系中的24个的近红外J和H表面光度法。哈勃太空望远镜的出色角分辨率可探测大多数这些活动星系核(AGN)中的空间尺度,小至数十个视差,并且对存在核条以及对引导宿主星系的AGN加油过程的其他潜在特征敏感气体和灰尘进入核区域。我们已经使用椭圆等压线技术在所有这些星系中搜索核棒,并采用了二维拟合技术对这些星系的亮子样本的核点源和表面亮度分布进行建模,以试图减轻这些星系的影响。核点源取决于我们对核棒的敏感性。我们在以下四个星系中找到了恒星核棒候选者:Mrk 471,Mrk 270,Mrk 573和NGC 5929,约占总样本的20%。当排除具有不规则形态或高倾斜度的系统时,该百分比增加到〜30%。 Mrk 573和Mrk 270中的核棒显示出沿其前缘的尘埃带的证据,类似于在宿主星系条中看到的结构,而Mrk 471和NGC 5929的尘埃带则显示出更复杂的形态。这些AGN中的大多数似乎不包含恒星核棒这一事实表明,它们并不是大多数低发光AGN的加油机制。

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