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首页> 外文期刊>Astronomy and astrophysics >Correlated optical, X-ray, and γ-ray flaring activity seen with INTEGRAL during the 2015 outburst of V404 Cygni
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Correlated optical, X-ray, and γ-ray flaring activity seen with INTEGRAL during the 2015 outburst of V404 Cygni

机译:在2015年V404 Cygni爆发期间,使用INTEGRAL观察到相关的光学,X射线和γ射线燃烧活动

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摘要

After 25 years of quiescence, the microquasar V404 Cyg entered a new period of activity in June 2015. This X-ray source is known to undergo extremely bright and variable outbursts seen at all wavelengths. It is therefore an object of prime interest to understand the accretion-ejection connections. These can, however, only be probed through simultaneous observations at several wavelengths. We made use of the INTEGRAL instruments to obtain long, almost uninterrupted observations from 2015 June 20, 15:50 UTC to June 25, 4:05 UTC, from the optical V band up to the soft γ-rays. V404 Cyg was extremely variable in all bands, with the detection of 18 flares with fluxes exceeding 6 Crab (20–40 keV) within three days. The flare recurrence can be as short as ~20 min from peak to peak. A model-independent analysis shows that the >6 Crab flares have a hard spectrum. A simple 10–400 keV spectral analysis of the off-flare and flare periods shows that the variation in intensity is likely to be only due to variations of a cut-off power-law component. The optical flares seem to be at least of two different types: one occurring in simultaneity with the X-ray flares, the other showing a delay greater than 10 min. The former could be associated with X-ray reprocessing by either an accretion disk or the companion star. We suggest that the latter are associated with plasma ejections that have also been seen in radio.
机译:经过25年的静止,微类星体V404 Cyg于2015年6月进入了一个新的活动时期。众所周知,该X射线源在所有波长下均会发生极其明亮和可变的爆发。因此,最重要的目的是理解吸积-射出连接。但是,这些只能通过同时观察几个波长来探测。从2015年6月20日15:50 UTC到6月25日4:05 UTC,我们利用INTEGRAL仪器获得了从光学V波段到软γ射线的长时间,几乎不间断的观测结果。 V404 Cyg在所有波段中变化很大,在三天内检测到18个耀斑,通量超过6 Crab(20–40 keV)。从峰到峰,耀斑复发可短至约20分钟。独立于模型的分析表明,> 6个螃蟹耀斑具有较硬的光谱。对耀斑和耀斑周期的简单10–400 keV频谱分析表明,强度的变化很可能仅是由于截止幂律分量的变化所致。光学耀斑似乎至少是两种不同类型:一种与X射线耀斑同时发生,另一种显示的延迟大于10分钟。前者可以通过吸积盘或伴星与X射线再处理相关联。我们建议后者与在无线电中也看到过的等离子体喷射有关。

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