论文标题
2016年H〜1743--322的爆发:\ textit {xmm-newton}和\ textit {nustar}查看
2016 outburst of H~1743--322: \textit{XMM-Newton} and \textit{NuSTAR} view
论文作者
论文摘要
我们报告了C QPO型的检测以及上谐波的检测,在低质量黑洞瞬态h〜1743--322的两个观察结果中,在1:2中的上谐波,由\ textit {xmm-newton}和\ textit {nustar}共同观察到。我们发现,相对于第一个观察,QPO和上谐波表现出其质心频率的变化。硬度强度图意味着,与2008年和2014年失败的爆发相比,2016年爆发是成功的。我们还检测到在两个观察结果中,$ \ sim $ 6.5 keV的宽铁k $α$线在15--30 keV的能量范围内。随着功率密度光谱的形状,特征频率的性质和定时特征的分数RMS幅度意味着在这些观察值期间,源保持在低/硬状态。此外,光子指数和其他光谱参数也表明源的低/硬状态行为。与2008年和2014年爆发期间在该来源中检测到的软滞后不同,我们观察到$ 0.40 \ pm0.15 $ $ 0.32 \ $ pm0.07 $ s的困难时间在2016年爆发期间的两个观测值中,在0.07--0.4 Hz的频率范围内。 QPO的光子指数与质心频率之间的相关性与先前的结果一致。此外,组成部分的高值和弱热成分表明QPO是通过组合过程调节的。
We report the detection of type C QPO along with the upper harmonic in the commensurate ratio of 1:2 in the two observations of the low-mass black hole transient H~1743--322 jointly observed by \textit{XMM-Newton} and \textit{NuSTAR} during the 2016 outburst. We find that the QPO and the upper harmonic exhibit shifts in their centroid frequencies in the second observation with respect to the first one. The hardness intensity diagram implies that in contrast to 2008 and 2014 failed outbursts, 2016 outburst was a successful one. We also detect the presence of a broad iron K$α$ line at $\sim$6.5 keV and reflection hump in the energy range of 15--30 keV in both the observations. Along with the shape of the power density spectra, the nature of the characteristic frequencies and the fractional rms amplitude of the timing features imply that the source stayed in the low/hard state during these observations. Moreover, photon index and other spectral parameters also indicate the low/hard state behavior of the source. Unlike the soft lag detected in this source during the 2008 and 2014 failed outbursts, we observe hard time-lag of $0.40\pm0.15$ and $0.32\pm0.07$ s in the 0.07--0.4 Hz frequency range in the two observations during the 2016 outburst. The correlation between the photon index and the centroid frequency of the QPO is consistent with the previous results. Furthermore, the high value of the Comptonized fraction and the weak thermal component indicate that the QPO is being modulated by the Comptonization process.