论文标题
使用哥特式自动检测双核星系,并发现大量的双agn样品
Automated Detection of Double Nuclei Galaxies using GOTHIC and the Discovery of a Large Sample of Dual AGN
论文作者
论文摘要
我们提出了一种新型算法,用于检测称为哥特式的双核星系(DNG)(图形迭代的山坡攀爬) - 检测到给定的星系图像是否具有两个或更紧密的核。我们的目的是检测星系中双重或多个活性银河核(AGN)的样品。尽管星系合并很常见,但对双重AGN的检测很少见。它们的检测非常重要,因为它们有助于我们了解多个核系统中超质量黑洞(SMBH)二进制,SMBH生长和AGN反馈效应的形成。因此,算法需要对现有成像数据进行系统调查,以发现DNG和双重AGN。我们已经在已知的DNG样本上测试了哥特式,然后将其应用于位于0至0.75的100万SDSS DR16星系的样本,并具有可用的光谱数据。我们在该样品中检测到159个双重AGN,其中2个是三重AGN系统。我们的结果表明,双重AGN并不常见,三重AGN甚至更稀有。 DNGS的颜色(U-R)幅度图表明,随着核的距离越来越近,随着AGN的增加,恒星的形成被淬灭。对于位于红色序列极端的双/三重AGN星系中,淬灭尤其突出。
We present a novel algorithm to detect double nuclei galaxies (DNG) called GOTHIC (Graph BOosted iterated HIll Climbing) - that detects whether a given image of a galaxy has two or more closely separated nuclei. Our aim is to detect samples of dual or multiple active galactic nuclei (AGN) in galaxies. Although galaxy mergers are common, the detection of dual AGN is rare. Their detection is very important as they help us understand the formation of supermassive black hole (SMBH) binaries, SMBH growth and AGN feedback effects in multiple nuclei systems. There is thus a need for an algorithm to do a systematic survey of existing imaging data for the discovery of DNGs and dual AGN. We have tested GOTHIC on a known sample of DNGs and subsequently applied it to a sample of a million SDSS DR16 galaxies lying in the redshift range of 0 to 0.75 approximately, and have available spectroscopic data. We have detected 159 dual AGN in this sample, of which 2 are triple AGN systems. Our results show that dual AGN are not common, and triple AGN even rarer. The color (u-r) magnitude plots of the DNGs indicate that star formation is quenched as the nuclei come closer and as the AGN fraction increases. The quenching is especially prominent for dual/triple AGN galaxies that lie in the extreme end of the red sequence.