论文标题
类星体的光学和紫外线变异性之间的相关性
Correlation between Optical and UV Variability of Quasars
论文作者
论文摘要
在多个波长中类星体的变异性是活性银核中物理条件的有用探针。特别是,超级质量黑洞(SMBH)的积聚磁盘中的可变积聚率,不稳定性和混响效应有望在紫外线和光条带中产生相关的通量变化。最近的工作进一步认为,二元类星体应表现出密切相关的紫外线和光学周期性。确实已经在大约30种类星体的小样品中建立了强紫外线相关性,并具有重采样的光曲线,并扩展了先前在光带中发现的“蓝色时代”趋势。在这里,我们通过检查了1,315个明亮的类星体中观察到的紫外线相关性,进一步测试了类星体可变性的性质,分别是重叠的紫外线和光学光曲线,分别是Galaxy Evolution Explorer(Galex)和Catalina实时瞬时调查(CRTS)。我们发现,在这个更大的样本中存在很强的相关性,但是我们以大约95%的置信度排除了一个简单的假设,即所有类星体的内在紫外线和光学变化都是完全相关的。因此,我们的结果意味着存在可能产生不相关的光学和紫外线变化的物理机制。
The variability of quasars across multiple wavelengths is a useful probe of physical conditions in active galactic nuclei. In particular, variable accretion rates, instabilities, and reverberation effects in the accretion disk of a supermassive black hole (SMBH) are expected to produce correlated flux variations in UV and optical bands. Recent work has further argued that binary quasars should exhibit strongly correlated UV and optical periodicities. Strong UV-optical correlations have indeed been established in small samples of up to approximately 30 quasars with well-sampled light curves, and have extended the "bluer-when-brighter" trend previously found within the optical bands. Here we further test the nature of quasar variability by examining the observed-frame UV-optical correlations in a large sample of 1,315 bright quasars with overlapping UV and optical light curves for the Galaxy Evolution Explorer (GALEX) and the Catalina Real-time Transient Survey (CRTS), respectively. We find that strong correlations exist in this much larger sample, but we rule out, at approximately 95% confidence, the simple hypothesis that the intrinsic UV and optical variations of all quasars are fully correlated. Our results therefore imply the existence of physical mechanism(s) that can generate uncorrelated optical and UV flux variations.