论文标题

微型Blazar Maxi J1836-194的射流中相关的光谱和时机特性

Correlating spectral and timing properties in the evolving jet of the micro blazar MAXI J1836-194

论文作者

Lucchini, M., Russell, T. D., Markoff, S. B., Vincentelli, F., Gardenier, D., Ceccobello, C., Uttley, P.

论文摘要

在爆发期间,黑洞X射线二进制文件(BHXB)的观察性质在几天到几个月的时间尺度上有所不同。这些相对较短的时间尺度使这些系统理想的实验室可以探测积聚材料和流出喷气机之间的耦合,因为积聚率有所不同。特别是,硬X射线发射的起源知之甚少,并且有高度争议。具有幂律形状的光谱成分是由于黑洞附近的光子组成的,但目前尚不清楚它是起源于积聚流本身还是在射流的底部,还是它们之间的界面区域。在本文中,我们通过在其2011年爆发期间对Maxi J1836-194的多波长发射进行建模来探索磁盘喷射连接。我们通过X射线光谱,X射线计时信息和一种可更好地隔离喷气机的物理特性的强大关节拟合方法组合无线电。我们的结果表明,喷气基底可以在该系统/爆发中产生强力X射线发射,但前提是其基部相当紧凑,并且发射电子的温度是亚偏好的。由于精力充沛的考虑,我们的模型有利于每个质子至少携带20对的轻度配对喷头。最后,我们发现X射线功率谱的性能与射流性质相关,这表明基本的物理过程调节了这两者。

During outbursts, the observational properties of black hole X-ray binaries (BHXBs) vary on timescales of days to months. These relatively short timescales make these systems ideal laboratories to probe the coupling between accreting material and outflowing jets as a the accretion rate varies. In particular, the origin of the hard X-ray emission is poorly understood and highly debated. This spectral component, which has a power-law shape, is due to Comptonisation of photons near the black hole, but it is unclear whether it originates in the accretion flow itself, or at the base of the jet, or possibly the interface region between them. In this paper we explore the disk-jet connection by modelling the multi-wavelength emission of MAXI J1836-194 during its 2011 outburst. We combine radio through X-ray spectra, X-ray timing information, and a robust joint-fitting method to better isolate the jet's physical properties. Our results demonstrate that the jet base can produce power-law hard X-ray emission in this system/outburst, provided that its base is fairly compact and that the temperatures of the emitting electrons are sub-relativistic. Because of energetic considerations, our model favours mildly pair-loaded jets carrying at least 20 pairs per proton. Finally, we find that the properties of the X-ray power spectrum are correlated with the jet properties, suggesting that an underlying physical process regulates both.

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