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A Wildly Flickering Jet in the Black Hole X-Ray Binary MAXI J1535–571

机译:黑洞X射线二进制MAXI J1535–571中的剧烈闪烁的喷射

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摘要

We report on the results of optical, near-infrared (NIR), and mid-infrared observations of the black hole X-ray binary candidate (BHB) MAXI J1535–571 during its 2017/2018 outburst. During the first part of the outburst (MJD 58004–58012), the source shows an optical–NIR spectrum that is consistent with an optically thin synchrotron power law from a jet. After MJD 58015, however, the source faded considerably, the drop in flux being much more evident at lower frequencies. Before the fading, we measure a dereddened flux density of 100 mJy in the mid-infrared, making MAXI J1535–571 one of the brightest mid-infrared BHBs known so far. A significant softening of the X-ray spectrum is evident contemporaneous with the infrared fade. We interpret it as being due to the suppression of the jet emission, similar to the accretion–ejection coupling seen in other BHBs. However, MAXI J1535–571 did not transition smoothly to the soft state, instead showing X-ray hardness deviations associated with infrared flaring. We also present the first mid-IR variability study of a BHB on minute timescales, with a fractional rms variability of the light curves of ~15%–22%, which is similar to that expected from the internal shock jet model, and much higher than the optical fractional rms (7%). These results represent an excellent case of multiwavelength jet spectral timing and demonstrate how rich, multiwavelength time-resolved data of X-ray binaries over accretion state transitions can help in refining models of the disk–jet connection and jet launching in these systems.
机译:我们报告了在2017/2018爆发期间黑洞X射线二元候选(BHB)MAXI J1535-571的光学,近红外(NIR)和中红外观测结果。在爆发的第一部分(MJD 58004–58012)中,震源显示了近红外光谱,该光谱与射流产生的光学稀薄的同步加速器功率定律一致。但是,在MJD 58015之后,源显着衰减,通量的下降在较低频率下更为明显。在衰落之前,我们测量的中红外的递减通量密度为100 mJy,这使MAXI J1535-571成为迄今为止已知的最亮的中红外BHB之一。 X射线光谱的显着软化与红外衰落同时出现。我们将其解释为是由于抑制了射流的排放,类似于其他BHB中的吸积-射出耦合。但是,MAXI J1535–571不能平稳过渡到软状态,而是显示出与红外闪耀有关的X射线硬度偏差。我们还展示了BHB在分钟时间尺度上的首次中红外变异性研究,光曲线的均方根变异性约为15%–22%,这与内部冲击射流模型的预期相似,并且更高比光学分数rms(7%)高。这些结果代表了多波长射流频谱定时的一个极好的例子,并证明了在吸积状态转换过程中X射线二进制文件的丰富的多波长时间分辨数据如何有助于改进这些系统中的盘状射流连接和射流发射模型。
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