论文标题

环境如何影响无线电AGN的形态?

How does environment affect the morphology of radio AGN?

论文作者

Morris, Melissa Elizabeth, Wilcots, Eric, Hooper, Eric, Heinz, Sebastian

论文摘要

带有弯曲无线电飞机的活性银河核(AGN)的星系用作密集环境的示踪剂,例如星系组和簇。使用这些喷气机的假设是,它们是在宿主星系移动的密集气态介质的RAM压力下弯曲的。但是,与喷气机的小组和簇中有很多AGN,这些AGN并不弯曲,这导致我们问:为什么某些AGN喷气机会受到其环境的影响,而其他AGN似乎没有?我们介绍了一项环境研究的结果,该研究对185个AGN的样本和弯曲的喷气机和191 AGN的样本,并带有未分离的喷气机,我们通过使用朋友的朋友算法搜索邻近的星系来表征它们的环境。我们发现,带有弯曲喷气机的AGN确实更有可能居住在群体和簇中,而无分的AGN更有可能以单打或成对存在。当仅考虑3个或更多星系的组中AGN时,我们发现弯曲的AGN比无脱离AGN更可能存在于星系中的光环中。我们还发现,不易生的AGN比弯曲AGN更有可能是最亮的银河系。此外,托有弯曲喷射的AGN的组具有比主持无物AGN的组更高的星系密度。奇怪的是,有一群AGN的弯曲喷气机的空间似乎较少,这表明它们可能嵌入宇宙的网络丝中。总体而言,我们的结果表明,弯曲的双打在较大,更密集且较少放松的环境中比无调双打更可能存在,这可能会将银河系的无线电形态与其环境联系起来。

Galaxies hosting Active Galactic Nuclei (AGN) with bent radio jets are used as tracers of dense environments, such as galaxy groups and clusters. The assumption behind using these jets is that they are bent under ram pressure from a dense, gaseous medium through which the host galaxy moves. However, there are many AGN in groups and clusters with jets that are not bent, which leads us to ask: why are some AGN jets affected so much by their environment while others are seemingly not? We present the results of an environmental study on a sample of 185 AGN with bent jets and 191 AGN with unbent jets in which we characterize their environments by searching for neighboring galaxies using a Friends-of-Friends algorithm. We find that AGN with bent jets are indeed more likely to reside in groups and clusters, while unbent AGN are more likely to exist in singles or pairs. When considering only AGN in groups of 3 or more galaxies, we find that bent AGN are more likely to exist in halos with more galaxies than unbent AGN. We also find that unbent AGN are more likely than bent AGN to be the brightest group galaxy. Additionally, groups hosting AGN with bent jets have a higher density of galaxies than groups hosting unbent AGN. Curiously, there is a population of AGN with bent jets that are in seemingly less dense regions of space, indicating they may be embedded in a cosmic web filament. Overall, our results indicate that bent doubles are more likely to exist in in larger, denser, and less relaxed environments than unbent doubles, potentially linking a galaxy's radio morphology to its environment.

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