论文标题
查看使用高斯流程的Blazar Light曲线周期性
Looking at Blazar Light Curve Periodicities with Gaussian Processes
论文作者
论文摘要
Blazar Flux的时间分析是一种有力的工具,可以推断这些来源的发射过程和物理。在最普遍的情况下,可用的光曲线不规则地采样和受间隙的影响,此外,还会受到相关噪声的影响,从而使它们的分析变得复杂。高斯工艺可能会提供可行的工具,以评估以任何采样和噪声模式为特征的光曲线中提议期间的统计意义。我们推断出文献中提出的两个众所周知的大部分的时期的重要性,其中有多种可能的周期性索赔:PG1553+113+113和PKS2155-304在高能量和光节中。将周期性组件添加到建模中可以更好地对分析的光曲线进行统计描述。对于PG1553+113,在高能和光学中,改进都相当坚固,而对于高能量的PKS2155-304,改进尚未足够强大以允许有说服力的主张,也没有光学分析中的分析出现的周期性证据。尽管在相对计算的要求上,通过高斯过程对光曲线进行建模,使我们能够获取有关所研究数据的大量信息,并提出了一个原始的分析框架,用于天体物理兴趣的光曲线。
Temporal analysis of blazar flux is a powerful tool to draw inferences about the emission processes and physics of these sources. In the most general case, the available light curves are irregularly sampled and influenced by gaps, and in addition are also affected by correlated noise, making their analysis complicated. Gaussian processes may offer a viable tool to assess the statistical significance of proposed periods in light curves characterized by any sampling and noise pattern. We infer the significance of the periods proposed in the literature for two well known blazars with multiple claims of possible year-long periodicity: PG1553+113 and PKS2155-304, in the high-energy and optical bands. Adding a periodic component to the modeling gives a better statistical description of the analyzed light curves. The improvement is rather solid for PG1553+113, both at high energies and in the optical, while for PKS2155-304 at high energies the improvement is not yet strong enough to allow cogent claims, and no evidence for periodicity emerged by the analysis in the optical. Modeling a light curve by means of Gaussian processes, in spite of being relatively computationally demanding, allows us to derive a wealth of information about the data under study and suggests an original analysis framework for light curves of astrophysical interest.