论文标题

光学诊断图中AGN区域的上限

Upper boundaries of AGN regions in optical diagnostic diagrams

论文作者

Ji, Xihan, Yan, Renbin, Riffel, Rogerio, Drory, Niv, Zhang, Kai

论文摘要

与适当假设下的电离模型相比,光学诊断图中星系的分布可以提供有关其物理参数的信息。通过使用漫画调查中的中央发射区域的样本,我们发现了光学BPT图中有源银河核(AGN)窄线区域(NLR)存在上边界的证据,尤其是在涉及[S II] $λλ$ 6716,6731/H $α$α$的图中。由于[S II] $λλ$ 6716、6731/H $α$和[O III] $λ$ 5007/H $β$比率的减少,光电离世模型可以很好地重现边界。虽然[S II] BPT图中上边界的确切位置仅弱取决于电离云的电子密度和次级氮的处方,但其对输入SED的形状的依赖性更强。这使我们能够将AGN SED的幂律指数限制在1 Ryd和$ \ sim100 $ ryd之间的小于或等于$ -1.40 \ pm 0.05 $。 [N II] BPT图中光电离模型的覆盖范围对电子密度和二级氮处方的依赖性更强。由于密度受[S II]双重比率的约束和受[S II] BPT图约束的输入,我们发现[N II] BPT图中的数据范围偏爱具有较高N/O比的那些处方。尽管冲击离子化的云可以产生与光电离的线比相似的线比,但上边界的产生形状(如果存在)可能与光离子化来源的形状不同。

The distribution of galaxies in optical diagnostic diagrams can provide information about their physical parameters when compared with ionization models under proper assumptions. By using a sample of central emitting regions from the MaNGA survey, we find evidence of the existence of upper boundaries for narrow-line regions (NLRs) of active galactic nuclei (AGN) in optical BPT diagrams, especially in the diagrams involving [S II]$λλ$6716, 6731/H$α$. Photoionization models can well reproduce the boundaries as a consequence of the decrease of [S II]$λλ$6716, 6731/H$α$ and [O III]$λ$5007/H$β$ ratios at very high metallicity. Whilst the exact location of the upper boundary in the [S II] BPT diagram only weakly depends on the electron density of the ionized cloud and the secondary nitrogen prescription, its dependence on the shapes of the input SEDs is much stronger. This allows us to constrain the power-law index of the AGN SED between 1 Ryd and $\sim100$ Ryd to be less than or equal to $-1.40\pm 0.05$. The coverage of the photoionization models in the [N II] BPT diagram has a stronger dependence on the electron density and the secondary nitrogen prescription. With the density constrained by the [S II] doublet ratio and the input SED constrained by the [S II] BPT diagram, we find that the extent of the data in the [N II] BPT diagram favors those prescriptions with high N/O ratios. Although shock-ionized cloud can produce similar line ratios as those by photoionization, the resulting shapes of the upper boundaries, if exist, would likely be different from those of a photoionizing origin.

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