2015 至 2017 年间通过无线电、毫米波和光学观测观察到的 OJ 287 的偏振行为

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomy & Astrophysics Pub Date : 2025-02-14 DOI:10.1051/0004-6361/202453009
J. Jormanainen, T. Hovatta, E. Lindfors, A. Berdyugin, W. Chamani, V. Fallah Ramazani, H. Jermak, S. G. Jorstad, A. Lähteenmäki, C. McCall, K. Nilsson, P. Smith, I. A. Steele, J. Tammi, M. Tornikoski, F. Wierda
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引用次数: 0

摘要

OJ 287是一颗明亮的耀变体,经过长达一个世纪的观测,它是拥有超大质量黑洞双星的最强候选者之一。它在2015年至2017年(MJD 57300-58000)之间的极化行为包含了几个有趣的事件,我们在本研究中重新分析了这些事件。我们收集了几个望远镜的光学光度和偏振数据,得到了这一时期的高节奏光曲线。在无线电波段,我们从AMAPOLA计划收集了毫米波长偏振数据。我们将它们与现有的多频偏振射电结果和全球mm-VLBI阵列在86 GHz下的超长基线干涉成像结果相结合。2015年12月,根据广义相对论双黑洞模型,观测到了一次光学耀斑。我们认为,在这段时间内吸积盘和喷流基地附近的整体活动可能与2017年3月喷流中出现的一个新的运动分量K的开始有关。通过额外的光学数据,我们发现与2015年12月的耀斑相吻合的快速偏振角旋转约210°,暗示这些事件之间可能存在联系。根据86 GHz的图像,我们计算出K的新速度为0.12 mas/年,这表明它在2015年耀斑发生时位于核心内。这一速度也支持了一种假设,即K通过准静止特征S1可能是2017年2月观测到的OJ 287的高能伽马射线耀斑的触发因素。利用毫米偏振数据,我们确定这些波段遵循厘米波段数据,但在K通过S1的时间内显示出差异。这表明毫米波段可以追踪到喷流的亚结构,而在厘米波段仍然无法确定。
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The polarisation behaviour of OJ 287 viewed through radio, millimetre, and optical observations between 2015 and 2017
OJ 287 is a bright blazar with century-long observations, and one of the strongest candidates to host a supermassive black hole binary. Its polarisation behaviour between 2015 and 2017 (MJD 57300–58000) contains several interesting events that we re-contextualise in this study. We collected optical photometric and polarimetric data from several telescopes and obtained high-cadence light curves from this period. In the radio band, we collected millimetre-wavelength polarisation data from the AMAPOLA programme. We combined them with existing multi-frequency polarimetric radio results and the results of very long-baseline interferometry imaging with the Global mm-VLBI Array at 86 GHz. In December 2015, an optical flare was seen according to the general relativistic binary black hole model. We suggest that the overall activity near the accretion disk and the jet base during this time may be connected to the onset of a new moving component, K, seen in the jet in March 2017. With the additional optical data, we find a fast polarisation angle rotation of ∼210° coinciding with the December 2015 flare, hinting at a possible link between these events. Based on the 86 GHz images, we calculated a new speed of 0.12 mas/yr for K, which places it inside the core at the time of the 2015 flare. This speed also supports the scenario in which the passage of K through the quasi-stationary feature S1 could have been the trigger for the very high-energy gamma-ray flare of OJ 287 seen in February 2017. With the millimetre-polarisation data, we establish that these bands follow the centimetre-band data but show a difference during the time when K passes through S1. This indicates that the millimetre bands trace substructures of the jet that are still unresolved in the centimetre bands.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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