论文标题

静态黑洞X射线二进制A0620-00的闪烁无线电飞机

The flickering radio jet from the quiescent black hole X-ray binary A0620-00

论文作者

dePolo, Donna L., Plotkin, Richard M., Miller-Jones, James C. A., Strader, Jay, Maccarone, Thomas J., O'Doherty, Tyrone N., Chomiuk, Laura, Gallo, Elena

论文摘要

弱积聚的黑洞X射线二进制文件发射紧凑型无线电飞机,即使在静态的光谱状态下,Eddington LuminSulosion的X射线照明处也持续存在。但是,仅从这些静态系统中的少数几个从无线电系统中检测到无线电连续体的发射,对它们的无线电变异性知之甚少。喷气式变异性可能导致静止中的紧凑物体的分类错误,并影响下一代无线电调查中黑洞X射线二进制文件的可检测性。在这里,我们介绍了A0620-00的无线电监控活动的结果,这是研究最鲜为人知,最不明的静态黑洞X射线二进制文件之一。我们使用Karl G. Jansky在2017年至2020年的31个时期内观察到了9.8 GHz的A0620-00,检测到源〜75%的时间。我们看到对所有时间尺度采样的显着差异,并且观察到的通量密度遵循对数正态分布,平均值为12.5 UJY,标准偏差为0.22 DEX。在No Epoch中,A0620-00与2005年(51 +/- 7 UJY)一样明亮,这意味着该原始检测是在异常明亮的耀斑中获得的,或者该系统随着时间的推移而在无线电中褪色。我们提出了暂定的证据,表明A0620-00的静止无线电发射的变化要小于V404 CYG的静态射击,这是唯一具有可比数据的黑洞二进制的V404 CYG。鉴于V404 CYG的射流发光度比A0620-00高20倍,因此这种比较可能表明,较少的发光喷气机在静止状态下的变化较小。

Weakly accreting black hole X-ray binaries launch compact radio jets that persist even in the quiescent spectral state, at X-ray luminosities <1e-5 of the Eddington luminosity. However, radio continuum emission has been detected from only a few of these quiescent systems, and little is known about their radio variability. Jet variability can lead to misclassification of accreting compact objects in quiescence, and affects the detectability of black hole X-ray binaries in next-generation radio surveys. Here we present the results of a radio monitoring campaign of A0620-00, one of the best-studied and least-luminous known quiescent black hole X-ray binaries. We observed A0620-00 at 9.8 GHz using the Karl G. Jansky Very Large Array on 31 epochs from 2017 to 2020, detecting the source ~75% of the time. We see significant variability over all timescales sampled, and the observed flux densities follow a lognormal distribution with a mean of 12.5 uJy and standard deviation of 0.22 dex. In no epoch was A0620-00 as bright as in 2005 (51 +/- 7 uJy), implying either that this original detection was obtained during an unusually bright flare, or that the system is fading in the radio over time. We present tentative evidence that the quiescent radio emission from A0620-00 is less variable than that of V404 Cyg, the only other black hole binary with comparable data. Given that V404 Cyg has a jet radio luminosity ~20 times higher than A0620-00, this comparison could suggest that less luminous jets are less variable in quiescence.

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