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The relation between radio and X-ray luminosity of black hole binaries: affected by inner cool disks?

机译:黑洞双星的无线电和X射线光度之间的关系:受内部冷盘影响吗?

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Context. Observations of the black hole X-ray binaries GX 339-4 and V404 Cygni have brought evidence of a strong correlation between radio and X-ray emission during the hard spectral state; however, now more and more sources, the so-called “outliers”, are found with a radio emission noticeably below the established “standard” relation. Several explanations have already been considered, but the existence of dual tracks is not yet fully understood. Aims. We suggest that in the hard spectral state re-condensation of gas from the corona into a cool, weak inner disk can provide additional soft photons for Comptonization, leading to a higher X-ray luminosity in combination with rather unchanged radio emission, which presumably traces the mass accretion rate. Methods. As an example, we determined how much additional luminosity due to photons from an underlying disk would be needed to explain the data from the representative outlier source H1743-322. Results. From the comparison with calculations of Compton spectra with and without the photons from an underlying disk, we find that the required additional X-ray luminosity lies well in the range obtained from theoretical models of the accretion flow. Conclusions. The radio/X-ray luminosity relation resulting from Comptonization of additional photons from a weak, cool inner disk during the hard spectral state can explain the observations of the outlier sources, especially the data for H1743-322, the source with the most detailed observations. The existence or non-existence of weak inner disks on the two tracks might point to a difference in the magnetic fields of the companion stars. These could affect the effective viscosity and the thermal conductivity, hence also the re-condensation process.
机译:上下文。对黑洞X射线双星GX 339-4和V404 Cygni的观察提供了证据,表明在硬光谱状态下无线电和X射线发射之间存在很强的相关性。但是,现在发现越来越多的源(所谓的“异常值”)的无线电发射明显低于已建立的“标准”关系。已经考虑了几种解释,但是对双轨的存在还没有完全理解。目的我们建议,在硬光谱状态下,气体从电晕再冷凝为冷的弱内盘,可以提供额外的软光子以进行Comptonization,从而导致较高的X射线发光度以及相当稳定的无线电发射,大概是微量的质量增加率。方法。例如,我们确定了由于来自底层磁盘的光子而需要多少额外的发光度,才能解释来自代表性异常值源H1743-322的数据。结果。通过比较带有和不带有来自下层磁盘的光子的康普顿光谱的计算结果,我们发现所需的附加X射线发光度恰好在从吸积流理论模型获得的范围内。结论。在硬光谱状态下,来自较弱,较冷的内部磁盘的额外光子的补偿化所产生的无线电/ X射线光度关系可以解释异常信号的观察结果,尤其是H1743-322的数据,该数据具有最详细的观察结果。两条轨道上是否存在弱内盘可能表明伴星的磁场存在差异。这些会影响有效粘度和导热率,进而影响再冷凝过程。

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