论文标题

重新访问具有空间分辨LBT光谱的双重AGN候选者 - 溢出光污染的影响

Revisiting dual AGN candidates with spatially resolved LBT spectroscopy -- The impact of spillover light contamination

论文作者

Husemann, B., Heidt, J., De Rosa, A., Vignali, C., Bianchi, S., Bogdanović, T., Komossa, S., Paragi, Z.

论文摘要

超级质量黑洞(SMBH)的合并是我们银河进化的分层图片的直接结果。在星系合并期间,很难跟踪SMBH的合并过程,因为SMBH自然很难观察。我们要表征并确认存在两个独立的活性银河核(AGN),这些核(AGN)在七个以前从斯隆数字天空调查(SDSS)中选择的七个强烈相互作用的星系中的几千座式分隔为Seyfert-Seyfert对,基于发射线比诊断。提出了用MOD在大型双目望远镜(LBT)处采用的光学缝隙光谱,以推断光学发射线的详细空间分布,其线比和AGN签名相对于宿主星系,从而量化了光束用梁的影响,并量化了SDSS捕获的光纤维对光谱的影响。我们发现,这七个目标中的最多两个实际上保留了seyfert-seyfert双重AGN,而其他目标则更有可能由后AGB恒星在退休的星系中或通过基于空间分辨的光学线路诊断的ISM冲击来提供动力。这种差异的主要原因是由次级SDSS纤维中主要来源的通量溢出引起的偏见,这可能比<3“分隔<3”的分隔级的数量级还要多。x射线至X射线至[\ ion {o} {o} {iii}]的极端差异也可以通过这种误解来解释。年轻的恒星年龄构成了仅从基于纤维的光谱中选择的双重AGN的主要AGN。

The merging of supermassive black holes (SMBHs) is a direct consequence of our hierarchical picture of galaxy evolution. It is difficult to track the merging process of SMBHs during mergers of galaxies as SMBHs are naturally difficult to observe. We want to characterise and confirm the presence of two independent active galactic nuclei (AGN) separated by a few kiloparsec in seven strongly interacting galaxies previously selected from the Sloan Digital Sky Survey (SDSS) as Seyfert-Seyfert pairs based on emission-line ratio diagnostics. Optical slit spectra taken with MODS at the Large Binocular Telescope (LBT) are presented to infer the detailed spatial distribution of optical emission lines, and their line ratios and AGN signatures with respect to the host galaxies, thereby quantifying the impact of beam smearing and large fibre apertures on the spectra captured by the SDSS. We find that at most two of the seven targets actually retain a Seyfert-Seyfert dual AGN, whereas the others may be more likely powered by post-AGB stars in retired galaxies or through shocks in the ISM based on spatially resolved optical line diagnostics. The major cause of this discrepancy is a bias caused by the spillover of flux from the primary source in the secondary SDSS fibre which can be more than an order of magnitude at <3" separations. Previously reported extremely low X-ray-to-[\ion{O}{iii}] luminosity ratios may be explained by this misclassification, as can heavily obscured AGN for the primaries. We also find that the nuclei with younger stellar ages host the primary AGN. Studies of close dual AGN selected solely from fibre-based spectroscopy can create severe biases in the sample selection and interpretation of the results. Spatially resolved spectroscopy should ideally be used in the future to characterise such compact systems together with multi-wavelength follow-up observations.

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