论文标题
来自光学和中红外成像调查的遥远类星体中的灰尘混响映射
Dust Reverberation Mapping in Distant Quasars from Optical and Mid-Infrared Imaging Surveys
论文作者
论文摘要
活性银河核(AGN)中的灰尘圆环的大小及其高光度对应物,类星体,可以从紫外线/光学积聚磁盘连续性变异性与中膜中(miR)圆环的响应之间的时间延迟来推断。这种灰尘回响映射(RM)技术已成功地应用于$ \ sim 70 $ $ z \ lyssim 0.3 $ agn和quasars。在这里,我们提出了我们的Dust RM计划的第一个结果,用于SDSS条纹覆盖的遥远类星体82区域,结合了$ \ sim 20 $ 20 $ - 基于地面的光光曲线,以及来自Wise Satellite的10-ARR Mir Light曲线。我们在W1波段(3.4 $ $ m)和$ g $ band之间测量高保真滞后,587型类星体超过$ 0.3 \ sillesim Z \ Lessim 2 $($ \ weft <z \ weft <z \ right> \ sim 0.8 $ 0.8 $)和两个Quasar LuminInosity的高级。他们紧随其后(固有的散布$ \ sim 0.17 $ dex in Lag)的IR滞后性关系$ z <0.3 $ agn,揭示了超过四十年的AGN亮度中的尘埃圆环的显着尺寸 - luminusity关系,几乎没有依赖于其他Quasar properties,例如Eddington率和变异性均值和变性。这项研究激发了对宇宙学的尘埃rm实用性的进一步研究,并强烈认可了一个令人信服的科学案例,为10年的Vera C. Rubin C. Rubin观测遗留遗留调查调查时空(光学)和5年Nancy Grace Roman Space望远镜2 $ M $ M $ M轻曲线,用于与低降低AGN DUSTIS的深度调查,并衡量许多IRSIS irosities,并调查了许多Irosities。我们父母样本中7,384种类星体的光学和mir光曲线被这项工作公开。
The size of the dust torus in Active Galactic Nuclei (AGN) and their high-luminosity counterparts, quasars, can be inferred from the time delay between UV/optical accretion disk continuum variability and the response in the mid-infrared (MIR) torus emission. This dust reverberation mapping (RM) technique has been successfully applied to $\sim 70$ $z\lesssim 0.3$ AGN and quasars. Here we present first results of our dust RM program for distant quasars covered in the SDSS Stripe 82 region combining $\sim 20$-yr ground-based optical light curves with 10-yr MIR light curves from the WISE satellite. We measure a high-fidelity lag between W1-band (3.4 $μ$m) and $g$ band for 587 quasars over $0.3\lesssim z\lesssim 2$ ($\left<z\right>\sim 0.8$) and two orders of magnitude in quasar luminosity. They tightly follow (intrinsic scatter $\sim 0.17$ dex in lag) the IR lag-luminosity relation observed for $z<0.3$ AGN, revealing a remarkable size-luminosity relation for the dust torus over more than four decades in AGN luminosity, with little dependence on additional quasar properties such as Eddington ratio and variability amplitude. This study motivates further investigations in the utility of dust RM for cosmology, and strongly endorses a compelling science case for the combined 10-yr Vera C. Rubin Observatory Legacy Survey of Space and Time (optical) and 5-yr Nancy Grace Roman Space Telescope 2$μ$m light curves in a deep survey for low-redshift AGN dust RM with much lower luminosities and shorter, measurable IR lags. The compiled optical and MIR light curves for 7,384 quasars in our parent sample are made public with this work.