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首页> 外文期刊>Astronomy and astrophysics >Variability-selected active galactic nuclei in the VST-SUDARE/VOICE survey of the COSMOS field
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Variability-selected active galactic nuclei in the VST-SUDARE/VOICE survey of the COSMOS field

机译:COSMOS场的VST-SUDARE / VOICE调查中的变率选择活动银河核

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摘要

Context. Active galaxies are characterized by variability at every wavelength, with timescales from hours to years depending on the observing window. Optical variability has proven to be an effective way of detecting AGNs in imaging surveys, lasting from weeks to years. Aims. In the present work we test the use of optical variability as a tool to identify active galactic nuclei in the VST multiepoch survey of the COSMOS field, originally tailored to detect supernova events. Methods. We make use of the multiwavelength data provided by other COSMOS surveys to discuss the reliability of the method and the nature of our AGN candidates. Results. The selection on the basis of optical variability returns a sample of 83 AGN candidates; based on a number of diagnostics, we conclude that 67 of them are confirmed AGNs (81% purity), 12 are classified as supernovae, while the nature of the remaining 4 is unknown. For the subsample of AGNs with some spectroscopic classification, we find that Type 1 are prevalent (89%) compared to Type 2 AGNs (11%). Overall, our approach is able to retrieve on average 15% of all AGNs in the field identified by means of spectroscopic or X-ray classification, with a strong dependence on the source apparent magnitude (completeness ranging from 26% to 5%). In particular, the completeness for Type 1 AGNs is 25%, while it drops to 6% for Type 2 AGNs. The rest of the X-ray selected AGN population presents on average a larger rms variability than the bulk of non-variable sources, indicating that variability detection for at least some of these objects is prevented only by the photometric accuracy of the data. The low completeness is in part due to the short observing span: we show that increasing the temporal baseline results in larger samples as expected for sources with a red-noise power spectrum. Our results allow us to assess the usefulness of this AGN selection technique in view of future wide-field surveys.
机译:上下文。活跃星系的特征在于每个波长的可变性,其时标从数小时到数年不等,这取决于观测窗口。事实证明,光学可变性是检测影像学调查中AGN的有效方法,持续数周至数年。目的在当前的工作中,我们测试了光学可变性作为一种工具的用途,该工具是在COSMOS场的VST多历时测量中识别活跃的银河核的工具,最初是为检测超新星事件而设计的。方法。我们利用其他COSMOS调查提供的多波长数据来讨论该方法的可靠性以及AGN候选对象的性质。结果。基于光学可变性的选择返回了83个AGN候选样本;根据许多诊断,我们得出结论,其中67份是确诊的AGN(纯度为81%),其中12份被归类为超新星,而其余4份的性质未知。对于具有某种光谱分类的AGN子样本,我们发现类型1的AGN比类型2的AGN(11%)更为普遍(89%)。总体而言,我们的方法能够通过光谱或X射线分类平均检索出该领域中所有AGN的15%,并且对源视在幅度的依赖性很大(完整性从26%到5%)。特别是,类型1 AGN的完整性为25%,而类型2 AGN的完整性下降为6%。其余的X射线选择的AGN群体平均呈现出比大部分不变源更大的均方根方差,这表明,仅通过数据的光度学准确性可以防止对其中至少一些物体的变化检测。完整性低的部分原因是观察间隔短:我们表明,增加时间基线会导致产生较大样本,这是具有红噪声功率谱的光源所期望的。我们的结果使我们能够根据未来的广域调查评估这种AGN选择技术的有用性。

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