基于光学光度和偏振时间序列数据的耀变体分类特征选择

M. Uemura, T. Abe, Yurika Yamada, Shiro Ikeda
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引用次数: 1

摘要

blazar可分为平谱射电类星体(FSRQs)和BL - Lac两个亚型,它们的光学发射谱线强度已被现象学上区分出来,但它们的物理性质和相互关系仍不完全清楚。在本文中,我们关注的是它们在变异性方面的差异。我们使用Ornstein-Uhlenbeck (OU)过程来描述耀变体的变异性,并研究了这两种亚型的区别特征。我们使用了2008-2014年1.5 m卡纳塔望远镜获得的光学光度和偏振数据。我们发现,从光曲线和偏振度(PD)中位数获得的变异性的变化幅度、特征时间尺度和非平稳性四个特征是区分FSRQs和BL Lac的必要特征。fsrq的特征是罕见和大的耀斑,而BL Lac物体的变异性可以用相对较小振幅的平稳OU过程来再现。变异的特征不是由各亚型之间射流结构的差异决定的,而是由同步辐射的峰值频率决定的。这意味着喷流变化的性质在fsrq和BL Lac天体中是常见的。我们发现BL Lac物体往往具有较高的PD中值,这表明它们具有稳定的偏振成分。FSRQs没有这样的成分,可能是因为在亚pc尺度的射流中有很强的康普顿冷却效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feature selection for classification of blazars based on optical photometric and polarimetric time-series data
Blazars can be divided into two subtypes, flat spectrum radio quasars (FSRQs) and BL Lac objects, which have been distinguished phenomenologically by the strength of their optical emission lines, while their physical nature and relationship are still not fully understood. In this paper, we focus on the differences in their variability. We characterize the blazar variability using the Ornstein-Uhlenbeck (OU) process, and investigate the features that are discriminative for the two subtypes. We used optical photometric and polarimetric data obtained with the 1.5-m Kanata telescope for 2008-2014. We found that four features, namely the variation amplitude, characteristic timescale, and non-stationarity of the variability obtained from the light curves and the median of the degree of polarization (PD), are essential for distinguishing between FSRQs and BL Lac objects. FSRQs are characterized by rare and large flares, while the variability of BL Lac objects can be reproduced with a stationary OU process with relatively small amplitudes. The characteristics of the variability are governed not by the differences in the jet structure between the subtypes, but by the peak frequency of the synchrotron emission. This implies that the nature of the variation in the jets is common in FSRQs and BL Lac objects. We found that BL Lac objects tend to have high PD medians, which suggests that they have a stable polarization component. FSRQs have no such component, possibly because of a strong Compton cooling effect in sub-pc scale jets.
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