论文标题

Maxi J1348-630中B型QPO的时间滞后

Time lags of the type-B QPO in MAXI J1348-630

论文作者

Belloni, Tomaso M., Zhang, Liang, Kylafis, Nikolaos D., Reig, Pablo, Altamirano, Diego

论文摘要

黑洞二进制文件中X射线发射中观察到的快速变异性具有非常复杂的现象学,但可以直接研究内部积聚流的特性。特别是,在软中间状态下观察到的2-8 Hz范围内的B型振荡与相对论射流的发射有关。我们介绍了用远程望远镜制成的一组明亮瞬态Maxi J1348-630的观察值的定时和光谱分析的结果。这些观察结果在爆发的最亮部分中,所有观测值都在〜4.5 Hz处具有强型B QPO。我们计算QPO频率下的分数RMS和相位滞后的能量依赖性,在低于2 keV的能量下首次获得高信噪数据和采样。分数RMS从9 KEV时的10%以上降低到1.5 KEV时的0.6%,并且低于该能量。以2-3的keV谱带为参考,所有能量的光子都显示出硬滞后,随着距参考带的距离而增加。由于以前的计时工具的较高能量带通,以前从未观察到低于2 KEV的行为。能量谱可以配备该状态的标准模型,该模型由薄的圆盘组件和更硬的功率定律以及6和7 KEV之间的发射线组成。我们讨论结果,集中于相位滞后,并表明它们可以在构造模型中解释。

The fast variability observed in the X-ray emission from black-hole binaries has a very complex phenomenology, but offers the possibility to investigate directly the properties of the inner accretion flow. In particular, type-B oscillations in the 2-8 Hz range, observed in the Soft-Intermediate state, have been associated to the emission from a relativistic jet. We present the results of the timing and spectral analysis of a set of observations of the bright transient MAXI J1348-630 made with the NICER telescope. The observations are in the brightest part of the outburst and all feature a strong type-B QPO at ~4.5 Hz. We compute the energy dependence of the fractional rms and the phase lags at the QPO frequency, obtaining high signal-to-noise data and sampling for the first time at energies below 2 keV. The fractional rms decreases from more than 10% at 9 keV to 0.6% at 1.5 keV, and is constant below that energy. Taking the 2-3 keV band as reference, photons at all energies show a hard lag, increasing with the distance from the reference band. The behaviour below 2 keV has never been observed before, due to the higher energy bandpass of previous timing instruments. The energy spectrum can be fitted with a standard model for this state, consisting of a thin disc component and a harder power law, plus an emission line between 6 and 7 keV. We discuss the results, concentrating on the phase lags, and show that they can be interpreted within a Comptonization model.

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