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Spectral and timing properties of the black hole X-ray binary H1743-322 in the low/hard state studied with Suzaku.

机译:Suzaku研究了低/硬状态下黑洞X射线二进制H1743-322的光谱和时间特性。

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摘要

We report on the results from Suzaku observations of the Galactic black hole X-ray binary H1743–322 in the low/hard state during its outburst in 2012 October. We appropriately take into account the effects of dust scattering to accurately analyze the X-ray spectra. The time-averaged spectra in the 1-200 keV band are dominated by a hard power-law component of a photon index of ≈1.6 with a high-energy cutoff at ≈60 keV, which is well described with the Comptonization of the disk emission by the hot corona. We estimate the inner disk radius from the multi-color disk component, and find that it is 1.3-2.3 times larger than the radius in the high/soft state. This suggests that the standard disk was not extended to the innermost stable circular orbit. A reflection component from the disk is detected with R = Ω/2π ≈ 0.6 (Ω is the solid angle). We also successfully estimate the stable disk component independent of the time-averaged spectral modeling by analyzing short-term spectral variability on a ~1 s timescale. A weak low-frequency quasi-periodic oscillation at 0.1-0.2 Hz is detected, whose frequency is found to correlate with the X-ray luminosity and photon index. This result may be explained by the evolution of the disk truncation radius.
机译:我们报告了朱雀在2012年10月爆发期间处于低/硬状态的银河黑洞X射线二进制H1743-322的朱雀观测结果。我们适当考虑了灰尘散射的影响,以准确分析X射线光谱。 1-200 keV频带中的时间平均光谱由光子指数≈1.6的硬幂律分量和≈60keV的高能量截止决定,这在圆盘发射的康普顿化中得到了很好的描述。在热的电晕下。我们从多色磁盘组件估算内部磁盘半径,发现它是高/软状态下半径的1.3-2.3倍。这表明标准圆盘没有延伸到最内层的稳定圆形轨道。通过R =Ω/2π≈0.6(Ω是立体角)检测到来自磁盘的反射分量。我们还通过分析〜1 s时标上的短期光谱变异性,成功地估计了与时间平均光谱模型无关的稳定磁盘分量。在0.1-0.2 Hz处检测到微弱的低频准周期振荡,发现其频率与X射线光度和光子指数相关。该结果可以通过盘截短半径的演变来解释。

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