论文标题

首次活动之后的Blazar OJ 287:跟踪2020年HBL类似组件的重新出现

Blazar OJ 287 After First VHE Activity: Tracking the Re-emergence of the HBL like Component in 2020

论文作者

Kushwaha, Pankaj, Pal, Main, Kalita, Nibedita, Kumari, Neeraj, Naik, Sachindra, Gupta, Alok C, Pino, E. M. de Gouveia Dal, Gu, Minfeng

论文摘要

我们通过对OJ 287的多波长光谱和时间行为进行了详细的系统研究,报告了新的宽带发射的重新出现,此前其首次报道了2017年迄今为止的VHE活动,其中包括源源的第二高X射线磁通量。源显示出高光学到X射线通量变化,主要伴随着强烈的光谱变化。光学到X射线通量变化是相关的和同时的,除了抗相关时两次。但是,通量变化与X射线光谱态抗相关,而与光学UV(紫外线)相关。最高X射线活动持续时间围绕最高X射线活动的每周binned {\ it fermi} -lat数据显示了一些具有log-parabola模型的检测,但没有幂律。然而,这两个模型的高活性持续时间的提取的LAT光谱分布(SED)相似,并且在1 GEV以上显示了硬化。此外,近红外(NIR)数据表明光谱的变化很大,类似于热成分。总体而言,合并的光学到伽马射线宽带幽默确定了观察到的新高能(HBL)宽带发射组件的变化,类似于2017年X射线通量状态中最高的X射线通量状态的变化。所观察到的活动表明,这一特征表明了这种典型的特征,这些特征是在该象征的范围内,这是该排放量的少数(在造成的少数情况下),并且是一定数量的,即在造成的X射线源状态,而该功能(又是一个符合的特征)(又是一定的,它是一个出现的象征,即一定的表现,即一年,这是一个符合的特征。光爆发强烈表明两者之间的联系。

We report the re-emergence of a new broadband emission through a detailed and systematic study of the multi-wavelength spectral and temporal behavior of OJ 287 after its first-ever reported VHE activity in 2017 to date, which includes the second-highest X-ray flux of the source. The source shows high optical to X-ray flux variations, accompanied mainly by strong spectral changes. The optical to X-ray flux variations are correlated and simultaneous except for two durations when they are anti-correlated. The flux variations, however, are anti-correlated with the X-ray spectral state while correlated with optical-UV (ultraviolet). Weekly binned {\it Fermi}-LAT data around the duration of the highest X-ray activity show a few detections with a log-parabola model but none with a power-law; yet the extracted LAT spectral energy distribution (SED) of the high activity duration for both the models is similar and show a hardening above 1 GeV. Further, near-infrared (NIR) data indicate strong spectral change, resembling a thermal component. Overall, the combined optical to gamma-ray broadband spectrum establishes the observed variations to a new high-energy-peaked (HBL) broadband emission component, similar to the one seen during the highest reported X-ray flux state of the source in 2017. The observed activities indicate some peculiar features that seem to be characteristic of this emission component while its appearance, a few years around the claimed \(\sim 12\)-year optical outbursts strongly indicate a connection between the two.

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