论文标题
ZW229-015的灰尘混响映射和灯曲线建模
Dust Reverberation Mapping and Light-Curve Modelling of Zw229-015
论文作者
论文摘要
活性银河核(AGN)的多波长变异性研究可用于探测其内部区域,而其内部区域不直接分解。灰尘混响映射(DRM)通过测量红外(IR)对光学光曲线变异性的响应之间的延迟来估计灰尘排放区域的大小。我们在2010- 2015年的光曲线和开普勒光线曲线和同时发生的IR Spitzer 3.6和4.5 $ $ $ m的光曲线之间测量ZW229-015的DRM滞后,从2010- 2015年开始,找到总平均平均静止固定滞后为18.3美元$ \ pm $ 4.5天。光学曲线和红外光曲线的每种组合都返回在1 $σ$之内相互一致的滞后,这意味着不同的波长由相同的热灰尘发射主导。发现针对ZW229-015测量的滞后滞后始终小于使用滞后劳度关系的预测。同样,对光学发射的总体IR响应实际上也取决于灰尘排放区域的几何形状和结构,因此我们使用马尔可夫链蒙特卡洛(MCMC)建模来模拟粉尘分布以进一步估算这些结构和几何特性。我们发现,在IR光曲线中,2011 - 2012年观测季节之间的通量大大增加,这是一个灰尘成分的很好的模拟。当排除通量增加时,建模始终表明灰尘分布在扩展的扁平磁盘中,并发现平均倾斜角为49 $^{+3} _ { - 13} $度。
Multiwavelength variability studies of active galactic nuclei (AGN) can be used to probe their inner regions which are not directly resolvable. Dust reverberation mapping (DRM) estimates the size of the dust emitting region by measuring the delays between the infrared (IR) response to variability in the optical light curves. We measure DRM lags of Zw229-015 between optical ground-based and Kepler light curves and concurrent IR Spitzer 3.6 and 4.5 $μ$m light curves from 2010-2015, finding an overall mean rest-frame lag of 18.3 $\pm$ 4.5 days. Each combination of optical and IR light curve returns lags that are consistent with each other within 1$σ$, which implies that the different wavelengths are dominated by the same hot dust emission. The lags measured for Zw229-015 are found to be consistently smaller than predictions using the lag-luminosity relationship. Also, the overall IR response to the optical emission actually depends on the geometry and structure of the dust emitting region as well, so we use Markov chain Monte Carlo (MCMC) modelling to simulate the dust distribution to further estimate these structural and geometrical properties. We find that a large increase in flux between the 2011-2012 observation seasons, which is more dramatic in the IR light curve, is not well simulated by a single dust component. When excluding this increase in flux, the modelling consistently suggests that the dust is distributed in an extended flat disk, and finds a mean inclination angle of 49$^{+3}_{-13}$ degrees.