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
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.