首页> 外文期刊>The Astrophysical journal >THE SPATIAL CLUSTERING OF ROSAT ALL-SKY SURVEY ACTIVE GALACTIC NUCLEI. IV. MORE MASSIVE BLACK HOLES RESIDE IN MORE MASSIVE DARK MATTER HALOS
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THE SPATIAL CLUSTERING OF ROSAT ALL-SKY SURVEY ACTIVE GALACTIC NUCLEI. IV. MORE MASSIVE BLACK HOLES RESIDE IN MORE MASSIVE DARK MATTER HALOS

机译:卫星全天候测量活动星系核的空间聚类。 IV。更多大量的暗物质光环中存在更多的大量黑洞

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This is the fourth paper in a series that reports on our investigation of the clustering properties of active galactic nuclei (AGNs) identified in the ROSAT All-Sky Survey and Sloan Digital Sky Survey (SDSS). In this paper we investigate the cause of the X-ray luminosity dependence of the clustering of broad-line, luminous AGNs at We fit the Hα line profile in the SDSS spectra for all X-ray and optically selected broad-line AGNs, determine the mass of the supermassive black hole (SMBH), and infer the accretion rate relative to Eddington (). Since and are correlated, we create AGN subsamples in one parameter while maintaining the same distribution in the other parameter. In both the X-ray and optically selected AGN samples, we detect a weak clustering dependence with and no statistically significant dependence on We find a difference of up to 2.7σ when comparing the objects that belong to the 30% least and 30% most massive subsamples, in that luminous broad-line AGNs with more massive black holes reside in more massive parent dark matter halos at these redshifts. These results provide evidence that higher accretion rates in AGNs do not necessarily require dense galaxy environments, in which more galaxy mergers and interactions are expected to channel large amounts of gas onto the SMBH. We also present semianalytic models that predict a positive dependence on which is most prominent at
机译:这是该系列文章中的第四篇,该系列报告了我们对ROSAT全天空调查和Sloan数字天空调查(SDSS)中确定的活动星系核(AGN)的聚类特性的研究。在本文中,我们调查了宽线,发光AGN的簇在X射线光度依赖性的原因,我们将所有X射线和光学选择的宽线AGN的Hα线轮廓拟合到SDSS光谱中,确定超质量黑洞的质量(SMBH),并推断相对于爱丁顿()的吸积率。由于和是相关的,因此我们在一个参数中创建AGN子样本,而在另一个参数中保持相同的分布。在X射线和光学选择的AGN样本中,我们都检测到了弱的聚类依赖关系,而没有统计学上的显着依赖关系。当比较质量最小的30%和质量最大的30%的物体时,我们发现差异高达2.7σ。子样本,因为在这些红移处,具有更大黑洞的发光宽线AGN驻留在更大的母暗物质晕中。这些结果提供了证据,表明AGN中较高的积聚率并不一定需要密集的星系环境,在该环境中,预计会有更多的星系合并和相互作用将大量气体引导到SMBH上。我们还提出了半分析模型,这些模型预测了在以下方面最显着的正相关性

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