论文标题

用X射线荧光测量相互作用的二元质量函数

Measuring interacting binary mass functions with X-ray fluorescence

论文作者

Brown, Cordelia Dashwood, Gandhi, Poshak, Charles, Phil

论文摘要

X射线二进制中的紧凑型物体的质量通过动力测量最佳地限制,依赖于伴随恒星的径向速度曲线。预计即将到来的高X射线光谱分辨率望远镜,我们探索了它们的潜力,以限制紧凑型物体的质量功能。 Fe K线荧光是发光X射线二进制光谱中的一个常见特征,其内部积聚盘的多普勒宽部分分量进行了广泛的研究。如果可以隔离来自X射线辐照的伴侣的相应狭窄线,这为进一步限制了二进制系统属性提供了机会。在这里,我们对二元几何形状进行建模,以确定伴侣恒星的固体角度,并推断铁线的等效宽度。我们发现,对于质量比$ q> 0.1 $的系统,预期的K $α$当量宽度为2-40 eV。使用XSPEC的模拟表明,新的微钙化器将具有足够的分辨率,能够产生K $α$排放线径向速度测量值,精度为5-40 km s $ s $^{ - 1} $,用于源连续性超过$ 10^{-12} $ erg cm $ $ $^$^} $ s source Continuum continuum continuum continuum continuum continuum continuum contruux。需要考虑一些警告;该方法取决于狭窄线与广泛分量的成功隔离,并且观察到速度的明显变化与复杂的风和盘行为所产生的散射无关。这些问题仍有待证明,微钙化器可以证明,但是该方法有可能在光学测量不可行的情况下限制二进制参数。

The masses of compact objects in X-ray binaries are best constrained through dynamical measurements, relying on radial velocity curves of the companion star. In anticipation of upcoming high X-ray spectral resolution telescopes, we explore their potential to constrain the mass function of the compact object. Fe K line fluorescence is a common feature in the spectra of luminous X-ray binaries, with a Doppler-broadened component from the inner accretion disc extensively studied. If a corresponding narrow line from the X-ray irradiated companion can be isolated, this provides am opportunity to further constrain the binary system properties. Here, we model binary geometry to determine the companion star's solid angle, and deduce the iron line's equivalent width. We find that for systems with a mass ratio $q > 0.1$, the expected K$α$ equivalent width is 2-40 eV. Simulations using XSPEC indicate that new microcalorimeters will have sufficient resolution to be able to produce K$α$ emission line radial velocity measurements with precision of 5-40 km s$^{-1}$, for source continuum fluxes exceeding $10^{-12}$ erg cm$^{-2}$ s$^{-1}$. Several caveats need to be considered; this method is dependent on successful isolation of the narrow line from the broad component, and the observation of clear changes in velocity independent of scatter arising from complex wind and disc behaviour. These issues remain to be proven with microcalorimeters, but this method has the potential to constrain binary parameters where optical measurements are not viable.

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