首页> 外文期刊>The Astrophysical Journal. Supplement Series >Deciphering the Large-scale Environment of Radio Galaxies in the Local Universe: Where Are They Born? Where Do They Grow? Where Do They Die?
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Deciphering the Large-scale Environment of Radio Galaxies in the Local Universe: Where Are They Born? Where Do They Grow? Where Do They Die?

机译:解读当地宇宙中的广播星系的大规模环境:他们出生在哪里? 他们在哪里成长? 他们死在哪里?

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The role played by the large-scale environment in the nuclear activity of radio galaxies (RGs) is still not completely understood. Accretion mode, jet power, and galaxy evolution are connected with their large-scale environment on scales from tens to hundreds of kiloparsecs. Here we present a detailed statistical analysis of the large-scale environment for two samples of RGs up to redshifts z(src) = 0.15. The main advantages of our study over studies in the literature are the extremely homogeneous selection criteria of the catalogs adopted to perform our investigation. This is also coupled with the use of several clustering algorithms. We performed a direct search of galaxy-rich environments around RGs by using them as beacons. To perform this study we also developed a new method that does not appear to suffer from a strong z(src) dependence as other algorithms do. We conclude that, despite their radio morphological classification (FR I versus FR II) and/or their optical classification (high- or low-excitation radio galaxy (HERG or LERG)), RGs in the local universe tend to live in galaxy-rich large-scale environments that have similar characteristics and richness. We highlight that the fraction of FR I LERGs inhabiting galaxy-rich environments appears to be larger than that of FR II LERGs. We also found that five out of seven FR II HERGs, with z(src) <= 0.11, lie in groups/clusters of galaxies. However, we recognize that, despite the high level of completeness of our catalogs, when restricting to the local universe, the low number of HERGs (similar to 10% of the total FR IIs investigated) prevents us drawing a strong statistical conclusion about this source class.
机译:大规模环境在无线电星系(RGS)的核活动中发挥的作用仍未完全理解。 Accretion模式,喷射力和Galaxy Evolution与其大规模环境相连,从数十到数百只千柱。在这里,我们对Z(SRC)Z(SRC)= 0.15的两个RGS样本的大规模环境进行了详细的统计分析。我们对文献中的研究的研究的主要优点是所采用的目录的极其均匀的选择标准。这也与使用多个聚类算法相结合。我们通过将它们作为信标进行了直接搜索了RGS周围的Galaxy的环境。为了执行这项研究,我们还开发了一种新的方法,似乎不会遭受强烈的Z(SRC)依赖性,因为其他算法做。我们得出结论,尽管他们的无线电形态分类(FR I与FR II)和/或它们的光学分类(高或低励磁无线电星系(HERG或HERRER)),当地宇宙中的RGS往往居住在Galaxy Rich具有相似特征和丰富性的大型环境。我们强调,居住在富含星系环境的FR I Hergs的分数似乎大于FR II Hergs的一部分。我们还发现,七个FR II Hergs中有五个,Z(SRC)<= 0.11,位于星系的组/簇中。但是,我们认识到,尽管我们目录的完整性高,但在限制当地宇宙时,HERG数量较少(类似于ICS的总IIS的10%)防止了我们对此来源的强烈统计结论班级。

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