论文标题
关于黑洞候选人最大J1836-194的反射成分的详细研究
A detailed study on the reflection component for the Black Hole Candidate MAXI J1836-194
论文作者
论文摘要
我们提出了黑洞候选Maxi J1836-194的详细光谱分析。该消息来源在2011年爆发期间被苏扎库和RXTE捕获。我们使用Relxill模型共同拟合来自这两个任务的X射线数据以研究反射分量,并且需要陡峭的内部发射率,表明需要紧凑的电晕,以实现良好的拟合度。此外,通常调用具有灯柱配置(RelxILLLP)的反射模型,该模型通常被调用以解释陡峭的发射率,与Relxill相比,拟合度较差,并在99%的置信度中排除。我们还通过将数据与两个相对论反射成分拟合,并发现内部的发射率会变平,我们还通过将数据拟合到发射率对发射率的影响。这些结果可能表明光盘的电离状态不是恒定的。上面的所有模型都需要超过4.5的超极性丰度。但是,我们发现,即使在太阳能富含太阳能铁的情况下,Reflionx的高密度版本也可以描述相同的光谱。我们的模型始终获得一个中等旋转的黑洞(A* = 0.84-0.94),这与先前报道的值一致。
We present a detailed spectral analysis of the black hole candidate MAXI J1836-194. The source was caught in the intermediate state during its 2011 outburst by Suzaku and RXTE. We jointly fit the X-ray data from these two missions using the relxill model to study the reflection component, and a steep inner emissivity profile indicating a compact corona as the primary source is required in order to achieve a good fit. In addition, a reflection model with a lamp-post configuration (relxilllp), which is normally invoked to explain the steep emissivity profile, gives a worse fit and is excluded at 99% confidence level compared to relxill. We also explore the effect of the ionization gradient on the emissivity profile by fitting the data with two relativistic reflection components, and it is found that the inner emissivity flattens. These results may indicate that the ionization state of the disc is not constant. All the models above require a supersolar iron abundance higher than 4.5. However, we find that the high-density version of reflionx can describe the same spectra even with solar iron abundance well. A moderate rotating black hole (a* = 0.84-0.94) is consistently obtained by our models, which is in agreement with previously reported values.