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首页> 外文期刊>The Astrophysical journal >SHORT-TERM VARIABILITY OF X-RAYS FROM ACCRETING NEUTRON STAR VELA X-1. I. SUZAKU OBSERVATIONS
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SHORT-TERM VARIABILITY OF X-RAYS FROM ACCRETING NEUTRON STAR VELA X-1. I. SUZAKU OBSERVATIONS

机译:吸收中子星膜X-1产生的X射线的短期变化。一,铃鹿的观察

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We have analyzed the time variability of the wide-band X-ray spectrum of Vela X-1, the brightest wind-fed accreting neutron star, on a short timescale of 2?ks by using Suzaku observations with an exposure of 100?ks. During the observation, the object showed strong variability, including several flares and so-called "low states," in which the X-ray luminosity decreases by an order of magnitude. Although the spectral hardness increases with the X-ray luminosity, the majority of the recorded flares do not show any significant changes in circumstellar absorption. However, a sign of heavy absorption was registered immediately before one short flare that showed a significant spectral hardening. In the low states, the flux level is modulated with the pulsar spin period, indicating that even at this state the accretion flow reaches the close proximity of the neutron star. Phenomenologically, the broadband X-ray spectra, which are integrated over the entire spin phase, are well represented by the "NPEX" function (a combination of negative and positive power laws with an exponential cutoff by a common folding energy) with a cyclotron resonance scattering feature at 50?keV. Fitting of the data allowed us to infer a correlation between the photon index and X-ray luminosity. Finally, the circumstellar absorption shows a gradual increase in the orbital phase interval 0.25-0.3, which can be interpreted as an impact of a bow shock imposed by the motion of the compact object in the supersonic stellar wind.
机译:我们使用Suzaku观测值在100?ks的辐射下,在2?ks的短时间尺度上分析了最亮的风馈积中子星Vela X-1的宽带X射线光谱的时变性。在观察过程中,物体表现出强烈的可变性,包括多个耀斑和所谓的“低态”,其中X射线的光度降低了一个数量级。尽管光谱硬度随X射线的光度而增加,但大多数记录的耀斑在周星吸收方面均未显示任何显着变化。但是,在出现明显光谱硬化的短短爆发之前,立即记录到大量吸收的迹象。在低状态下,通量水平由脉冲星自旋周期调制,这表明即使在此状态下,吸积流也达到中子星的近距离。从现象学上讲,在整个自旋相位上积分的宽带X射线光谱通过回旋加速器共振的“ NPEX”函数(负幂律和正幂律以及具有共同折叠能的指数截止值的组合)很好地表示。 50?keV时的散射特性。数据的拟合使我们能够推断出光子指数与X射线光度之间的相关性。最后,周星吸收显示出轨道相位间隔0.25-0.3的逐渐增加,这可以解释为由超音速恒星风中的紧凑物体的运动施加的弓形冲击的影响。

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