论文标题

喷射的窄线Seyfert 1星系破坏了喷气范式 - 宿主星系形态的全面研究

Jetted narrow-line Seyfert 1 galaxies breaking the jet paradigm -- a comprehensive study of host galaxy morphologies

论文作者

Varglund, Irene, Järvelä, Emilia, Lähteenmäki, Anne, Berton, Marco, Ciroi, Stefano, Congiu, Enrico

论文摘要

狭窄的Seyfert 1(NLS1)星系是未发展的活性银河核(AGN),主要存在于螺旋星系中。但是,主要是由于研究的来源数量很少,因此一直存在争议,这是托管相对论喷气机的这些特定来源的喷气式NLS1星系的宿主是否是磁盘状的,或椭圆形的,还是椭圆形的宿主,是更强大的喷射AGN的宿主。我们研究了14个NLS1星系的宿主形态,其中11个在37 GHz处被检测到,表明这些来源具有相对论的喷气机。本研究中使用的J-和KS波段数据是通过北欧光学望远镜(NOT)获得的。我们使用带有更好拟合的频带进行了宿主星系的光度分解,并创建了具有J-和KS波段观察的所有来源的颜色图。我们能够成功地模拟12个来源,其中9种很可能具有磁盘样的形态。在其余的来源中,一个来源可能托管在磁盘状的或矮星系中,在两种情况下,结果尚无定论。我们只有一个来源显示出明显的相互作用迹象,但是我们大多数来源的颜色图暗示了细胞核中充足的灰尘,可能表明较早的次要合并,由于这些观察结果的分辨率有限,因此可能会引起人们的注意。我们的结果进一步支持类似磁盘样的星系,是喷射NLS1星系的主要宿主类型。 Most importantly, with the number of modelled hosts of jetted NLS1s now exceeding 50, with only a few elliptical hosts, it seems to be safe to conclude that also disk-like galaxies are able to launch and maintain relativistic jets, and that the traditional jet paradigm stating that only massive elliptical galaxies are capable of hosting relativistic jets is severely outdated.

Narrow-line Seyfert 1 (NLS1) galaxies are unevolved active galactic nuclei (AGN) that exist predominantly in spiral galaxies. However, mostly due to the small number of sources studied, it has been under debate whether also the hosts of jetted NLS1 galaxies, a particular subclass of these sources hosting a relativistic jet, are disk-like, or elliptical, as the hosts of more powerful jetted AGN. We studied the host morphologies of 14 NLS1 galaxies, 11 of which have been detected at 37 GHz indicating that these sources harbour relativistic jets. The J- and Ks-band data used in this study were obtained with the Nordic Optical Telescope (NOT). We performed the photometric decomposition of the host galaxy using the band that gave a better fit, and additionally, created colour maps of all sources that had both a J- and a Ks-band observation. We were able to successfully model 12 sources, nine of which most likely have disk-like morphology. Of the remaining sources, one source could possibly be hosted either in a disk-like or a dwarf galaxy, and in two cases the results are inconclusive. Only one of our sources shows clear signs of interaction, but the colour maps of most of our sources hint at ample dust in the nuclei, possibly indicating earlier minor mergers, that can go unnoticed due to the limited resolution of these observations. Our results further support disk-like galaxies as the predominant host type of jetted NLS1 galaxies. Most importantly, with the number of modelled hosts of jetted NLS1s now exceeding 50, with only a few elliptical hosts, it seems to be safe to conclude that also disk-like galaxies are able to launch and maintain relativistic jets, and that the traditional jet paradigm stating that only massive elliptical galaxies are capable of hosting relativistic jets is severely outdated.

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