论文标题

使用颜色彩色强度图比较分离X射线二进制类的X射线颜色选择

Comparing X-ray color selection in separating X-ray binary classes using Color-Color-Intensity diagrams

论文作者

Islam, Nazma, Vrtilek, S. D., Boroson, Bram, Kim, D. -W., O'Sullivan, E., McCollough, M. L., Fabbiano, G., Anderson, C., Burke, D. J., D'Abrusco, R., Fruscione, A., Lauer, J. L., Morgan, D., Mossman, A., Paggi, A., Trinchieri, G.

论文摘要

X射线二进制文件具有广泛的特性,但是很少有可接受的方法来确定紧凑型物体的性质。已经提出了颜色彩色强度图作为区分包含黑洞的系统与包含中子星的系统的一种手段。但是,仅使用仅使用预定的能量频段中可用的数据定义的一组X射线颜色的数据(RXTE/ASM)的数据对此技术进行了验证。我们使用更灵敏的仪器测试X射线颜色的选择,以确定该方法的可靠性。我们使用Maxi Gas Slit摄像头的数据,该数据允许用户指定能量波段。我们测试了以前在文献中定义的X射线颜色以及本文中专门定义的X射线颜色。一组代表性的系统用于在每组颜色集中构造色彩强度图,以确定哪些最适合分离不同类别的颜色。对于研究单个来源,某些频段比其他频段更有效。对于指定的能量范围,只有在柔软的和硬颜色都包含来自最低能量带的信息的情况下,黑洞二进制文件中软状态的分离才有可能。我们确认颜色 - 强度图可以区分所有测试的X射线颜色中包含黑洞或中子星的系统;这表明在管理这些不同类别的积聚过程中的普遍性。我们建议在颜色彩色强度图中驱动不同类别的X射线二进制文件的物理过程。

X-ray binaries exhibit a wide range of properties but there are few accepted methods to determine the nature of the compact object. Color-Color-Intensity diagrams have been suggested as a means of distinguishing between systems containing black holes from those containing neutron stars. However, this technique has been verified with data from only one instrument (RXTE/ASM) with a single set of X-ray colors defined using data available only in pre-determined energy bands. We test a selection of X-ray colors with a more sensitive instrument to determine the reliability of this method. We use data from the MAXI Gas Slit Camera, which allows users to specify energy-bands. We test X-ray colors that have been previously defined in the literature as well as ones that we define specifically in this paper. A representative set of systems are used to construct Color-Color-Intensity diagrams in each set of colors to determine which are best for separating different classes. For studying individual sources certain bands are more effective than others. For a specified energy range, the separation of soft states in black hole binaries was possible only where both soft and hard colors included information from the lowest energy band. We confirm that Color-Color-Intensity diagrams can distinguish between systems containing black holes or neutron stars in all X-ray colors tested; this suggests an universality in the accretion processes governing these different classes. We suggest possible physical processes driving different classes of X-ray binaries to different locations in Color-Color-Intensity diagrams.

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