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首页> 外文期刊>The Astrophysical journal >RELATIVISTIC LINES AND REFLECTION FROM THE INNER ACCRETION DISKS AROUND NEUTRON STARS
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RELATIVISTIC LINES AND REFLECTION FROM THE INNER ACCRETION DISKS AROUND NEUTRON STARS

机译:相对论线和中子星周围内吸积盘的反射

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A number of neutron star low-mass X-ray binaries (LMXBs) have recently been discovered to show broad, asymmetric Fe K emission lines in their X-ray spectra. These lines are generally thought to be the most prominent part of a reflection spectrum, originating in the inner part of the accretion disk where strong relativistic effects can broaden emission lines. We present a comprehensive, systematic analysis of Suzaku and XMM-Newton spectra of 10 neutron star LMXBs, all of which display broad Fe K emission lines. Of the 10 sources, 4 are Z sources, 4 are atolls, and 2 are accreting millisecond X-ray pulsars (also atolls). The Fe K lines are fit well by a relativistic line model for a Schwarzschild metric, and imply a narrow range of inner disk radii (6-15 GM/c 2) in most cases. This implies that the accretion disk extends close to the neutron star surface over a range of luminosities. Continuum modeling shows that for the majority of observations, a blackbody component (plausibly associated with the boundary layer) dominates the X-ray emission from 8 to 20?keV. Thus it appears likely that this spectral component produces the majority of the ionizing flux that illuminates the accretion disk. Therefore, we also fit the spectra with a blurred reflection model, wherein a blackbody component illuminates the disk. This model fits well in most cases, supporting the idea that the boundary layer illuminates a geometrically thin disk.
机译:最近发现,许多中子星低质量X射线双星(LMXB)在其X射线光谱中显示出宽大的不对称Fe K发射线。这些线通常被认为是反射光谱中最突出的部分,起源于吸积盘的内部,强烈的相对论效应可以使发射线变宽。我们对10个中子星LMXB的Suzaku和XMM-Newton光谱进行了全面,系统的分析,所有这些均显示了宽的Fe K发射谱线。在10个放射源中,有4个是Z放射源,有4个是环礁,还有2个是产生毫秒级X射线脉冲星(也是环礁)。 Fe K线非常适合Schwarzschild度量的相对论线模型,这意味着在大多数情况下内部圆盘半径范围很窄(6-15 GM / c 2)。这意味着吸积盘在一定范围的光度范围内靠近中子星表面延伸。连续谱模型表明,对于大多数观察而言,黑体成分(可能与边界层相关)占主导地位的是从8keV到20keV的X射线发射。因此,该光谱分量似乎产生了照亮吸积盘的大部分电离通量。因此,我们还使用模糊反射模型拟合光谱,其中黑体分量照亮了圆盘。该模型非常适合大多数情况,支持边界层照亮几何薄盘的想法。

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