论文标题

Bl Lacertae在2020年历史高爆发期间的光学通量和光谱变化

Optical flux and spectral variability of BL Lacertae during its historical high outburst in 2020

论文作者

Kalita, Nibedita, Yuan, Yuhai, Gu, Minfeng, Fan, Junhui, Mizuno, Yosuke, Jiang, Peng, Gupta, Alok C., Zhou, Hongyan, Pan, Xiang, Strigachev, Anton A., Bachev, Rumen S., Cui, Lang

论文摘要

从2020年8月的光学上到$γ$ rays,BlaCertae经历了一系列历史高通量活动。在本文中,我们报告了10月至11月在中国Xinglong天文台的126m望远镜的G,R和I乐队的第一次历史最大值爆发事件的光学通量和光谱变异性。当发现最快的可变性时间尺寸为几十分钟时,我们发现了显着的Xightight变化,幅度上升到$ \ sim 30 $%%,从而使$ 10^{ - 3} $ pc的发射区域大小相对应,该订单与$ \ $ \ sim 100 $ sim 100 $ schwarzschild radius of Central Black Black hole of Central Black Black hole of Central Black Book of Black Black hole,可能来自一些零件Mini Mini Sourture。与内部时间尺度不同,在长时间尺度上检测到了通量变化的清晰频率依赖性模式($ \ sim $ 11D)。光谱演化占主导地位,占主导地位的亮度,即亮度的增加,即96%的病例中的蓝光趋势是蓝光的趋势。在爆发峰的前一天晚上,颜色指标聚集在两个不同的分支中,以颜色的颜色图(缩放图)在$ \ sim $ 6小时内,该图与从时间分辨光谱中提取的硬柔软光谱演化趋势相连。据我们所知,这种趋势从未在BL Lac或其他任何Blazars中看到过。在这项研究中获得的结果可以在射流过程中引起的颗粒加速度或磁重连接的背景下进行解释,在射流过程中,湍流过程很可能导致夜间时间尺度的不对称通量变化。

BL Lacertae had undergone a series of historical high flux activity over a year, from August 2020 in the optical to VHE $γ$-rays. In this paper, we report on optical flux and spectral variability of the first historical maxima outburst event during October-November in g, r and i bands with the 1.26m telescope at Xinglong observatory, China. We detected significant intranight variations with amplitude rising up to $\sim 30$%, when the fastest variability timescale is found to be a few tens of minutes, giving an emitting region size of the order $10^{-3}$ pc, which corresponds to $\sim 100$ Schwarzschild radius of the central black hole, likely coming from some jet mini-structures. Unlike on intranight timescale, a clear frequency dependent pattern along with symmetric timescales ($\sim$ 11d) of flux variation are detected on long timescale. The spectral evolution was predominated by flattening of the spectra with increasing brightness i.e., a bluer-when-brighter trend in 96% of the cases. On the night before the outburst peak, the color indices clustered in two distinct branches in color--magnitude diagram within a period of $\sim$ 6 hours that is connected to a hard-soft-hard spectral evolution trend extracted from time-resolved spectra. Such trend has never seen in BL Lac or any other blazars before to the best of our knowledge. The results obtained in this study can be explained in the context of shock induced particle acceleration or magnetic re-connection in the jet where turbulent processes most likely resulted the asymmetric flux variation on nightly timescale.

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