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首页> 外文期刊>The Astrophysical journal >The QUEST–La Silla AGN Variability Survey: Connection between AGN Variability and Black Hole Physical Properties
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The QUEST–La Silla AGN Variability Survey: Connection between AGN Variability and Black Hole Physical Properties

机译:QUEST-La Silla AGN变异性调查:AGN变异性与黑洞物理性质之间的联系

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We present our statistical analysis of the connection between active galactic nucleus (AGN) variability and physical properties of the central supermassive black hole (SMBH). We constructed optical light curves using data from the QUEST–La Silla AGN variability survey. To model the variability, we used the structure function, among the excess variance and the amplitude from Damp Random Walk (DRW) modeling. For the measurement of SMBH physical properties, we used public spectra from the Sloan Digital Sky Survey (SDSS). Our analysis is based on an original sample of 2345 sources detected in both SDSS and QUEST–La Silla. For 1473 of these sources we could perform a proper measurement of the spectral and variability properties, and 1348 of these sources were classified as variable (91.5%). We found that the amplitude of the variability (A) depends solely on the rest-frame emission wavelength and the Eddington ratio, where A anticorrelates with both λ rest and L/L Edd. This suggests that AGN variability does not evolve over cosmic time, and its amplitude is inversely related to the accretion rate. We found that the logarithmic gradient of the variability (γ) does not correlate significantly with any SMBH physical parameter, since there is no statistically significant linear regression model with an absolute value of the slope higher than 0.1. Finally, we found that the general distribution of γ measured for our sample differs from the distribution of γ obtained for light curves simulated from a DRW process. For 20.6% of the variable sources in our sample, a DRW model is not appropriate to describe the variability, since γ differs considerably from the expected value of 0.5.
机译:我们介绍了我们的活动银河核(AGN)变异性与中央超大规模黑洞(SMBH)物理属性之间的联系的统计分析。我们使用QUEST-La Silla AGN变异性调查的数据构建了光曲线。为了对可变性进行建模,我们使用了结构函数,其中包括过度变化和Damp Random Walk(DRW)建模中的振幅。对于SMBH物理性能的测量,我们使用了Sloan数字天空调查(SDSS)的公共光谱。我们的分析基于在SDSS和QUEST–La Silla中检测到的2345个源的原始样本。对于这些来源中的1473个,我们可以对光谱和可变性属性进行适当的测量,并且将这些来源中的1348个分类为变量(91.5%)。我们发现,变异性(A)的幅度仅取决于静止帧发射波长和爱丁顿比率,其中A与λrest和L / L Edd相关。这表明AGN变异性不会随着宇宙时间而演化,并且其幅度与吸积率成反比。我们发现变异性(γ)的对数梯度与任何SMBH物理参数均不显着相关,因为不存在斜率绝对值高于0.1的具有统计意义的线性回归模型。最后,我们发现为我们的样品测得的γ的一般分布与从DRW过程模拟的光曲线获得的γ的分布不同。对于我们样本中20.6%的可变源,DRW模型不适用于描述可变性,因为γ与0.5的预期值相差很大。

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