论文标题

$ akari $/irc north north Ecliptic Pole场中AGNS的无灭绝,来自太空望远镜的23波段红外光度法

Extinction-free Census of AGNs in the $AKARI$/IRC North Ecliptic Pole Field from 23-band Infrared Photometry from Space Telescopes

论文作者

Wang, Ting-Wen, Goto, Tomotsugu, Kim, Seong Jin, Hashimoto, Tetsuya, Burgarella, Denis, Toba, Yoshiki, Shim, Hyunjin, Miyaji, Takamitsu, Hwang, Ho Seong, Jeong, Woong-Seob, Kim, Eunbin, Ikeda, Hiroyuki, Pearson, Chris, Malkan, Matthew, Oi, Nagisa, Santos, Daryl Joe D., Małek, Katarzyna, Pollo, Agnieszka, Ho, Simon C. -C., Matsuhara, Hideo, On, Alvina Y. L., Kim, Helen K., Hsiao, Tiger Yu-Yang, Huang, Ting-Chi

论文摘要

为了了解中央黑洞与整个星系或其共同进化历史以及宇宙时间之间的相互作用,主动银河核(AGN)的完整人口普查至关重要。但是,在光学,紫外线和柔软的X射线观察中通常会错过AGN,因为它们可能被气体和灰尘遮盖。由多波长数据支持的中红外(MID-IR)调查是找到被模糊的AGN活动的最佳方法之一,因为它遭受了灭绝的少量。以前的大型IR光度测量,例如$ Wise $和$ Spitzer $,在MID-IR过滤器之间存在差距。因此,MID-IR中的恒星形成星系(SFG) - AGN诊断受到限制。 $ akari $卫星在接近MID-IR波长中具有独特的连续9波段滤波覆盖范围。在这项工作中,我们利用了最新的光谱能量分布(SED)建模软件Cigale在MID-IR中找到AGN。我们使用此方法在尼普范围内发现了126个AGN。我们还研究了AGN释放的能量,这是银河系总IR光度的一部分。我们发现,对于给定的IR发光度,在较高的红移下,AGN的贡献较大。随着即将进行的深度IR调查,例如JWST $,我们希望通过我们的方法找到更多的AGN。

In order to understand the interaction between the central black hole and the whole galaxy or their co-evolution history along with cosmic time, a complete census of active galactic nuclei (AGN) is crucial. However, AGNs are often missed in optical, UV and soft X-ray observations since they could be obscured by gas and dust. A mid-infrared (mid-IR) survey supported by multiwavelength data is one of the best ways to find obscured AGN activities because it suffers less from extinction. Previous large IR photometric surveys, e.g., $WISE$ and $Spitzer$, have gaps between the mid-IR filters. Therefore, star forming galaxy (SFG)-AGN diagnostics in the mid-IR were limited. The $AKARI$ satellite has a unique continuous 9-band filter coverage in the near to mid-IR wavelengths. In this work, we take advantage of the state-of-the-art spectral energy distribution (SED) modelling software, CIGALE, to find AGNs in mid-IR. We found 126 AGNs in the NEP-Wide field with this method. We also investigate the energy released from the AGN as a fraction of the total IR luminosity of a galaxy. We found that the AGN contribution is larger at higher redshifts for a given IR luminosity. With the upcoming deep IR surveys, e.g., $JWST$, we expect to find more AGNs with our method.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源