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首页> 外文期刊>The Astrophysical Journal. Letters >EVENTS LEADING UP TO THE 2015 JUNE OUTBURST OF V404 CYG
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EVENTS LEADING UP TO THE 2015 JUNE OUTBURST OF V404 CYG

机译:导致2015年6月V404 CYG爆发的事件

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On 2015 June 15 the burst alert telescope (BAT) on board Swift detected an X-ray outburst from the black hole (BH) transient V404 Cyg. We monitored V404 Cyg for the last 10 years with the 2-m Faulkes Telescope North in three optical bands (V, R, and i '). We found that, one week prior to this outburst, the optical flux was 0.1-0.3 mag brighter than the quiescent orbital modulation, implying an optical precursor to the X-ray outburst. There is also a hint of a gradual optical decay (years) followed by a rise lasting two months prior to the outburst. We fortuitously obtained an optical spectrum of V404 Cyg 13 hr before the BAT trigger. This too was brighter than quiescence, and showed spectral lines typical of an accretion disk, with characteristic absorption features of the donor being much weaker. No He II emission was detected, which would have been expected had the X-ray flux been substantially brightening. This, combined with the presence of intense H alpha emission, about seven times the quiescent level, suggests that the disk entered the hot, outburst state before the X-ray outburst began. We propose that the outburst is produced by a viscous-thermal instability triggered close to the inner edge of a truncated disk. An X-ray delay of a week is consistent with the time needed to refill the inner region and hence move the inner edge of the disk inwards, allowing matter to reach the central BH, finally turning on the X-ray emission.
机译:2015年6月15日,Swift机上的爆炸警报望远镜(BAT)从黑洞(BH)瞬态V404 Cyg探测到X射线爆发。在过去的10年中,我们使用2-m Faulkes望远镜北在三个光学波段(V,R和i')监视了V404 Cyg。我们发现,在爆发前一周,光通量比静态轨道调制要亮0.1-0.3磁格,这暗示着X射线爆发的光学前兆。也有迹象表明光逐渐衰减(年),然后在爆发前两个月持续上升。我们很幸运地在BAT触发前13小时获得了V404 Cyg的光谱。这也比静态更亮,并且显示出吸积盘的典型光谱线,而供体的特征吸收特征弱得多。没有检测到He II发射,如果X射线通量显着变亮,这是可以预期的。再加上强烈的H alpha发射(大约是静态水平的7倍),表明磁盘在X射线爆发开始之前就进入了高温爆发状态。我们认为,爆发是由粘性热不稳定性触发而产生的,该不稳定性在短截盘的内边缘附近触发。一周的X射线延迟与重新填充内部区域并因此向内移动磁盘的内部边缘所需的时间一致,从而使物质到达中心BH,最后打开X射线发射。

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