...
首页> 外文期刊>Astronomy and astrophysics >SUDARE-VOICE variability-selection of active galaxies in the Chandra Deep Field South and the SERVS/SWIRE region
【24h】

SUDARE-VOICE variability-selection of active galaxies in the Chandra Deep Field South and the SERVS/SWIRE region

机译:钱德拉深场南部和SERVS / SWIRE地区活动星系的SUDARE-VOICE变异性选择

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Context. One of the most peculiar characteristics of active galactic nuclei (AGNs) is their variability over all wavelengths. This property has been used in the past to select AGN samples and is foreseen to be one of the detection techniques applied in future multi-epoch surveys, complementing photometric and spectroscopic methods. Aims. In this paper, we aim to construct and characterise an AGN sample using a multi-epoch dataset in the r band from the SUDARE-VOICE survey. Methods. Our work makes use of the VST monitoring programme of an area surrounding the Chandra Deep Field South to select variable sources. We use data spanning a six-month period over an area of 2 square degrees, to identify AGN based on their photometric variability. Results. The selected sample includes 175 AGN candidates with magnitude r< 23 mag. We distinguish different classes of variable sources through their lightcurves, as well as X-ray, spectroscopic, SED, optical, and IR information overlapping with our survey. Conclusions. We find that 12% of the sample (21/175) is represented by supernovae (SN). Of the remaining sources, 4% (6/154) are stars, while 66% (102/154) are likely AGNs based on the available diagnostics. We estimate an upper limit to the contamination of the variability selected AGN sample ?34%, but we point out that restricting the analysis to the sources with available multi-wavelength ancillary information, the purity of our sample is close to 80% (102 AGN out of 128 non-SN sources with multi-wavelength diagnostics). Our work thus confirms the efficiency of the variability selection method, in agreement with our previous work on the COSMOS field. In addition we show that the variability approach is roughly consistent with the infrared selection.
机译:上下文。活性银河核(AGN)最独特的特征之一是它们在所有波长上的可变性。过去已使用此属性来选择AGN样本,并且可以预见,它将作为未来多周期勘测中应用的检测技术之一,是对光度法和光谱法的补充。目的在本文中,我们旨在使用SUDARE-VOICE调查的r波段中的多历时数据集构建和表征AGN样本。方法。我们的工作利用Chandra Deep Field South周围地区的VST监视程序来选择可变源。我们使用跨越2平方度区域的六个月期间的数据,基于其光度变异性来识别AGN。结果。所选样本包括175个AGN候选者,其幅度r <23 mag。我们通过其光曲线以及与我们的调查重叠的X射线,光谱,SED,光学和IR信息来区分不同种类的可变源。结论。我们发现超新星(SN)代表了12%的样本(21/175)。根据可用的诊断,在其余来源中,有4%(6/154)是恒星,而66%(102/154)是AGN。我们估计选定的AGN样本变异性污染的上限为34%,但我们指出,将分析限制在具有可用的多波长辅助信息的源上,样本的纯度接近80% %(具有多波长诊断的128个非SN信号源中有102个AGN)。因此,与我们先前在COSMOS领域的工作一致,我们的工作证实了可变性选择方法的效率。此外,我们表明,可变性方法与红外选择大致一致。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号