论文标题
高电源IR精细结构线作为AGN功率的辐射指标:完整的12 micro AGN样品的研究
The high-ionization IR fine-structure lines as bolometric indicators of the AGN power: study of the complete 12 micron AGN sample
论文作者
论文摘要
在活动银河核(AGN)的狭窄线区域(NLR)中激发的高离子IR线,几乎不受恒星激发和粉尘灭绝的影响,追踪AGN骨化功率。我们使用了完整的12微米样品塞弗特星系,100/116对象具有可靠的2-10keV观测值。 [NEV]和[OIV] MID-IR系线与多个AGN辐射指标(固有的2-10KeV和14-195KeV X射线发射,紧凑型核12微米的发射,[OIII] 5007A线发射)线性相关。在Seyfert人群中,包括1型和2型以及康普顿厚而薄的AGN之间,没有发现这些相关性系统差异的证据。然而,我们发现一系列高低的爱丁顿比率以及强到纽线激发(由[OIV]/[NE II]线比率跟踪)包括从1型至2型AGN到低电离核发射线区域(LINER)星系的序列,显示了这三个AGN群体的内在差异。发现黑洞吸积率(BHAR)与恒星形成速率(SFR)之间存在正相关,但是特定的SFR(SSFR)与BATIO BHAR/M_(BH)之间没有相关性,仅反映出较大的巨大是星系的事实,它越多地形成星星和中央黑洞。 JWST望远镜刚刚开始操作,将允许在附近宇宙中的这些线中观察大量AGN样品(z <0.9)。
The high-ionization mid-IR lines, excited in the Narrow Line Regions (NLR) of Active Galactic Nuclei (AGN), barely affected by stellar excitation and dust extinction, trace the AGN bolometric power. We used the complete 12 micron sample of Seyfert galaxies, for which 100/116 objects have reliable 2-10keV observations. The [NeV] and [OIV] mid-IR lines linearly correlate with several AGN bolometric indicators (intrinsic 2-10keV and observed 14-195keV X-ray emission, compact nuclear 12 micron emission, [OIII] 5007A line emission), both in terms of flux and luminosity. No evidence of systematic differences in these correlations is found among the Seyfert populations, including type 1 and type 2, and Compton thick and thin AGN. Nevertheless, we find that a sequence of high-to-low Eddington ratio together with strong-to-weak line excitation (traced by the [OIV]/[Ne II] line ratio) encompasses from type 1 through type 2 AGN to Low Ionization Nuclear Emission Line Region (LINER) galaxies, showing intrinsic differences in these three AGN populations. A positive correlation between the Black Hole Accretion Rate (BHAR) and the Star Formation Rate (SFR) is found, but no correlation between the specific SFR (sSFR) and the ratio BHAR/M_(BH), simply reflecting the fact that the more massive is a galaxy, the more it is forming stars and feeding its central black hole. The JWST telescope, just beginning operations, will allow large samples of AGN to be observed in these lines in the nearby Universe (z<0.9).