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利用复杂网络为射电波段耀变体光变曲线赋予随机性程度

Assigning Degrees of Stochasticity to Blazar Light Curves in the Radio Band Using Complex Networks.

作者信息

Acosta-Tripailao Belén, Max-Moerbeck Walter, Pastén Denisse, Moya Pablo S

机构信息

Departamento de Física, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425, Ñuñoa, Santiago 7800003, Chile.

Departamento de Astronomía, Facultad de Ciencias Físicas y Matemáticas, Universidad de Chile, Camino El Observatorio 1515, Las Condes, Santiago 7591245, Chile.

出版信息

Entropy (Basel). 2022 Aug 2;24(8):1063. doi: 10.3390/e24081063.

Abstract

We focus on characterizing the high-energy emission mechanisms of blazars by analyzing the variability in the radio band of the light curves of more than a thousand sources. We are interested in assigning complexity parameters to these sources, modeling the time series of the light curves with the method of the Horizontal Visibility Graph (HVG), which allows us to obtain properties from degree distributions, such as a characteristic exponent to describe its stochasticity and the Kullback-Leibler Divergence (KLD), presenting a new perspective to the methods commonly used to study Active Galactic Nuclei (AGN). We contrast these parameters with the excess variance, which is an astronomical measurement of variability in light curves; at the same time, we use the spectral classification of the sources. While it is not possible to find significant correlations with the excess variance, the degree distributions extracted from the network are detecting differences related to the spectral classification of blazars. These differences suggest a chaotic behavior in the time series for the BL Lac sources and a correlated stochastic behavior in the time series for the FSRQ sources. Our results show that complex networks may be a valuable alternative tool to study AGNs according to the variability of their energy output.

摘要

我们通过分析一千多个源的光变曲线在射电波段的变化,着重刻画耀变体的高能发射机制。我们感兴趣的是为这些源赋予复杂性参数,用水平可见性图(HVG)方法对光变曲线的时间序列进行建模,这使我们能够从度分布中获得一些性质,比如用于描述其随机性的特征指数以及库尔贝克 - 莱布勒散度(KLD),为研究活动星系核(AGN)常用的方法提供了一个新视角。我们将这些参数与过剩方差进行对比,过剩方差是光变曲线变化性的一种天文测量;同时,我们使用源的光谱分类。虽然无法找到与过剩方差的显著相关性,但从网络中提取的度分布正在检测出与耀变体光谱分类相关的差异。这些差异表明,对于蝎虎座BL天体源,时间序列存在混沌行为,而对于平谱射电类星体(FSRQ)源,时间序列存在相关的随机行为。我们的结果表明,复杂网络可能是根据活动星系核能量输出的变化性来研究它们的一种有价值的替代工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3882/9407290/eaa3f11b0370/entropy-24-01063-g0A1.jpg

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