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Limitations on the recovery of the true AGN variability parameters using damped random walk modeling

机译:使用阻尼随机游走模型恢复真实AGN变异性参数的限制

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Context. The damped random walk (DRW) stochastic process is nowadays frequently used to model aperiodic light curves of active galactic nuclei (AGNs). A number of correlations between the DRW model parameters, the signal decorrelation timescale and amplitude, and the physical AGN parameters, such as the black hole mass or luminosity, have been reported. Aims. We are interested in whether or not it is plausible to correctly measure the DRW parameters from a typical ground-based survey, and, in particular, in how accurate the recovered DRW parameters are compared to the input ones. Methods. By means of Monte Carlo simulations of AGN light curves, we studied the impact of the light curve length, the source magnitude (the photometric properties of a survey), cadence, and additional light (e.g., from a host galaxy) on the DRW model parameters. Results. The most significant finding is that currently existing surveys are going to return unconstrained DRW decorrelation timescales, because typical rest-frame data do not probe long enough timescales or the white noise part of the power spectral density for DRW. The experiment length must be at least ten times longer than the true DRW decorrelation timescale, being presumably in the vicinity of one year, thus meaning the necessity for AGN light curves measuring a minimum of 10 years (rest-frame). The DRW timescales for sufficiently long light curves are typically weakly biased, and the exact bias depends on the fitting method and used priors. The DRW amplitude is mostly affected by the photometric noise (the source magnitude or the signal-to-noise ratio), cadence, and the AGN host light. Conclusions. Because the DRW parameters appear to be incorrectly determined from typically existing data, the reported correlations of the DRW variability and physical AGN parameters from other works seem unlikely to be correct. In particular, the anti-correlation of the DRW decorrelation timescale with redshift is a manifestation of the survey length being too short. Application of DRW to modeling typical AGN optical light curves is questioned.
机译:上下文。如今,阻尼随机游走(DRW)随机过程经常被用来模拟活跃银河核(AGNs)的非周期性光曲线。已经报道了DRW模型参数,信号去相关时标和幅度以及物理AGN参数(例如黑洞质量或发光度)之间的许多相关性。目的我们感兴趣的是,从典型的地面调查中正确测量DRW参数是否合理,尤其是将恢复的DRW参数与输入参数进行比较的准确性。方法。通过对AGN光曲线的蒙特卡洛模拟,我们研究了光曲线长度,源大小(勘测的光度特性),节奏和附加光(例如来自主星系的光)对DRW模型的影响参数。结果。最重要的发现是,当前的调查将返回不受约束的DRW去相关时标,因为典型的静止帧数据无法探测到足够长的时标或DRW功率谱密度的白噪声部分。实验长度必须至少比真正的DRW去相关时标长十倍,大概在一年左右,因此,这意味着必须测量至少10年(静止帧)的AGN光曲线。对于足够长的光曲线,DRW时标通常会产生微弱的偏差,确切的偏差取决于拟合方法和使用的先验。 DRW幅度主要受光度学噪声(源幅度或信噪比),节奏和AGN主机光的影响。结论。由于DRW参数似乎是从通常现有的数据中错误地确定的,因此其他工作中报告的DRW变异性和物理AGN参数之间的相关性似乎不太正确。特别地,DRW去相关时标与红移的反相关是调查长度太短的体现。有人质疑将DRW用于模拟典型AGN光曲线的应用。

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