论文标题

2019AVD的特殊核瞬变的无线电检测和积聚特性

The radio detection and accretion properties of the peculiar nuclear transient AT 2019avd

论文作者

Wang, Yanan, Baldi, Ranieri D., del Palacio, Santiago, Guolo, Muryel, Yang, Xiaolong, Zhang, Yangkang, Done, Chris, Segura, Noel Castro, Pasham, Dheeraj R., Middleton, Matthew, Altamirano, Diego, Gandhi, Poshak, Qiao, Erlin, Jiang, Ning, Yan, Hongliang, Giroletti, Marcello, Migliori, Giulia, McHardy, Ian, Panessa, Francesca, Jin, Chichuan, Shen, Rongfeng, Dai, Lixin

论文摘要

在2019AVD上是一种从红外到软X射线的核瞬变,尽管其性质尚不清楚。该消息来源显示了光学和红外频带连续两次发作的发作,其第二张耀斑被X射线监测程序覆盖。在这种耀斑期间,紫外线/迅速的光图显示了两个高原:一个在峰后观察到,另一个在240天后出现。同时,我们的更好和XRT/SWIFT广告系列在X射线排放中显示了两次下降,一个在第一个光平台上,光学/UV下降后70-90天。证据表明,光学/紫外线不可能主要起源于X射线后处理。此外,我们在光学和紫外线发射之间检测到了约16-34天的时间,这表明光学可能来自紫外线在0.01-0.03 pc的距离内紫外线重新处理。我们还报告了该来源的第一个VLA和VLBA检测,以不同的频率和不同的阶段的不同阶段。在无线电频段中获得的信息 - 即陡峭和较晚的倒无线电频谱,高亮度温度和后期的无线电状态 - 以及2019AVD的多波长特性表明,诸如碟片风或Jets之类的外流的发射和演变。总而言之,我们建议在第一次耀斑点燃黑洞活动后,在第二张耀斑结束时,将形成的超级 - 埃德丁顿耀斑的积聚盘并定居在埃德丁顿州,与紧凑的无线电流出相关。

AT 2019avd is a nuclear transient detected from infrared to soft X-rays, though its nature is yet unclear. The source has shown two consecutive flaring episodes in the optical and the infrared bands and its second flare was covered by X-ray monitoring programs. During this flare, the UVOT/Swift photometries revealed two plateaus: one observed after the peak and the other one appeared ~240 days later. Meanwhile, our NICER and XRT/Swift campaigns show two declines in the X-ray emission, one during the first optical plateau and one 70-90 days after the optical/UV decline. The evidence suggests that the optical/UV could not have been primarily originated from X-ray reprocessing. Furthermore, we detected a timelag of ~16-34 days between the optical and UV emission, which indicates the optical likely comes from UV reprocessing by a gas at a distance of 0.01-0.03 pc. We also report the first VLA and VLBA detection of this source at different frequencies and different stages of the second flare. The information obtained in the radio band - namely a steep and a late-time inverted radio spectrum, a high brightness temperature and a radio-loud state at late times - together with the multiwavelength properties of AT 2019avd suggests the launching and evolution of outflows such as disc winds or jets. In conclusion, we propose that after the ignition of black hole activity in the first flare, a super-Eddington flaring accretion disc formed and settled to a sub-Eddington state by the end of the second flare, associated with a compact radio outflow.

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