论文标题

HSC SSP瞬态调查中AGN多次光学变异性的属性

Properties of AGN Multiband Optical Variability in the HSC SSP Transient Survey

论文作者

Kimura, Yuki, Yamada, Toru, Kokubo, Mitsuru, Yasuda, Naoki, Morokuma, Tomoki, Nagao, Tohru, Matsuoka, Yoshiki

论文摘要

我们通过使用从COSMOS领域的Hyper Soprime-CAM Subaru策略计划(HSC SSP)调查中获得的深度光学多型光度计数据来研究主动银河核(AGN)的可变性。在这里分析的图像分别在$ g $,$ r $,$ i $和$ z $ bands的三年内拍摄了8、10、13和15个时代。我们确定了491个健壮的变量AGN候选,降至$ i = 25 $ mag,红移高达$ 4.26 $。在Chandra Cosmos传统调查中检测到的X射线源,分别识别出可变性的AGN的百分之九十%。我们通过使用结构函数分析研究了它们的变异性属性,并发现低亮度agns的结构函数($ l _ {\ Mathrm {bol}} \ lyseSim10^{45} $ erg s $^{ - 1} $)与光度相反的趋势呈正相关,这是相反的趋势。这种趋势可能是由宿主星系光对低亮度AGN的较大贡献引起的。使用星系光谱的模型模板,我们评估了宿主星系对结构函数分析的贡献的量,并发现需要年轻恒星种群的优势来解释观察到的光度依赖性。这表明低亮度Agns $ 0.8 \ Lessim z \ Lessim1.8 $主要托管在星形的星系中。 X射线堆叠分析揭示了我们变异性选择的样品中未检测到的单独X射线AGN的显着发射。堆叠的样品在其堆叠的X射线频谱中显示出非常大的硬度比,这表明这些光学上可变的源具有无尘气体的较大软X射线吸收。

We study variability of active galactic nuclei (AGNs) by using the deep optical multiband photometry data obtained from the Hyper Suprime-Cam Subaru Strategic Program (HSC SSP) survey in the COSMOS field. The images analyzed here were taken with 8, 10, 13, and 15 epochs over three years in the $g$, $r$, $i$, and $z$ bands, respectively. We identified 491 robust variable AGN candidates, down to $i=25$ mag and with redshift up to $4.26$. Ninety percent of the variability-selected AGNs are individually identified with the X-ray sources detected in the Chandra COSMOS Legacy survey. We investigate their properties in variability by using structure function analysis and find that the structure function for low-luminosity AGNs ($L_{\mathrm{bol}}\lesssim10^{45}$ erg s$^{-1}$) shows a positive correlation with luminosity, which is the opposite trend for the luminous quasars. This trend is likely to be caused by larger contribution of the host galaxy light for lower-luminosity AGNs. Using the model templates of galaxy spectra, we evaluate the amount of host galaxy contribution to the structure function analysis and find that dominance of the young stellar population is needed to explain the observed luminosity dependence. This suggests that low-luminosity AGNs at $0.8\lesssim z\lesssim1.8$ are predominantly hosted in star-forming galaxies. The X-ray stacking analysis reveals the significant emission from the individually X-ray undetected AGNs in our variability-selected sample. The stacked samples show very large hardness ratios in their stacked X-ray spectrum, which suggests that these optically variable sources have large soft X-ray absorption by dust-free gas.

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