首页> 外文期刊>The Astrophysical journal >A CLUMPY STELLAR WIND AND LUMINOSITY-DEPENDENT CYCLOTRON LINE REVEALED BY THE FIRST SUZAKU OBSERVATION OF THE HIGH-MASS X-RAY BINARY 4U 1538–522
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A CLUMPY STELLAR WIND AND LUMINOSITY-DEPENDENT CYCLOTRON LINE REVEALED BY THE FIRST SUZAKU OBSERVATION OF THE HIGH-MASS X-RAY BINARY 4U 1538–522

机译:高质量X射线二元4U 1538–522的首次Suzaku观测揭示了一个块状的星状风和与亮度有关的回旋线

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We present results from the first Suzaku observation of the high-mass X-ray binary 4U 1538–522. The broadband spectral coverage of Suzaku allows for a detailed spectral analysis, characterizing the cyclotron resonance scattering feature at 23.0 ± 0.4? keV and the iron Kα line at 6.426 ± 0.008 keV, as well as placing limits on the strengths of the iron Kβ line and the iron K edge. We track the evolution of the spectral parameters both in time and in luminosity, notably finding a significant positive correlation between cyclotron line energy and luminosity. A dip and spike in the light curve is shown to be associated with an order-of-magnitude increase in column density along the line of sight, as well as significant variation in the underlying continuum, implying the accretion of a overdense region of a clumpy stellar wind. We also present a phase-resolved analysis, with most spectral parameters of interest showing significant variation with phase. Notably, both the cyclotron line energy and the iron Kα line intensity vary significantly with phase, with the iron line intensity significantly out of phase with the pulse profile. We discuss the implications of these findings in the context of recent work in the areas of accretion column physics and cyclotron resonance scattering feature formation.
机译:我们介绍了从朱雀首次观测到的高质量X射线二进制4U 1538–522得出的结果。朱雀的宽带光谱覆盖范围允许进行详细的光谱分析,表征回旋加速器共振散射特征为23.0±0.4?。 keV和铁Kα线为6.426±0.008 keV,并且对铁Kβ线和铁K边缘的强度设置了限制。我们跟踪光谱参数在时间和亮度方面的演变,特别是发现回旋加速器线能量和亮度之间存在显着的正相关。如图所示,光曲线中的尖峰和尖峰与沿视线的列密度的数量级增加以及底层连续体的显着变化有关,这意味着聚集了一个块状的过密区域。恒星风。我们还提出了一种相位分辨分析,其中大多数感兴趣的光谱参数显示随相位的显着变化。值得注意的是,回旋加速器线能量和铁Kα线强度都随相位显着变化,铁线强度与脉冲轮廓明显异相。我们在吸积柱物理学和回旋共振散射特征形成领域的最新工作中讨论这些发现的含义。

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