论文标题

银河中心的X射线背景发射,并用nustar凸起

The X-ray Background Emission of the Galactic Center and Bulge with NuSTAR

论文作者

Kuznetsova, Ekaterina, Krivonos, Roman, Perez, Kerstin, Wik, Daniel R.

论文摘要

据信,银河弥漫性X射线发射(GDXE)是由许多低亮度X射线二元系统的未解决的种群引起的,这些系统痕迹是银河系的恒星质量分布。在过去十年中进行的许多专门研究表明,GDXE的主要贡献者是吸收白矮人(WDS)的人群。问题是关于在银河系的不同区域中的非磁性WD二进制二元组,磁中间球(IPS)和极点的相对贡献的相对贡献:银河系中心,凸起和山脊。最近的低能量(E $ <10 $ KEV)的研究表明,非磁性wd二进制文件,尤其是静态矮人novae,为银河系凸起的弥漫性硬X射线排放提供了重大贡献。从另一侧,凸起和山脊的先前高能(E $> 10 $ keV)的X射线测量意味着磁性CVS的主要种群,尤其是中间极点。在这项工作中,我们使用nustar的侧孔来探测银河凸出的内部$ \ sim1-3^{\ circ} $的弥漫性连续体,这使我们能够约束光谱的柔软和硬种群成分的可能混合物。我们发现,GDXE光谱是由单个温度热等离子体很好地描述的,$ kt \ kt \ 8 $ keV,这支持凸起由静态矮人novae主导,没有证据表明硬X射线中有明显的中等极性人群。我们还将这一结果与以前的Nustar测量值和银河中心的内部100 PC进行了比较。

The Galactic diffuse X-ray emission (GDXE) is believed to arise from unresolved populations of numerous low-luminosity X-ray binary systems that trace stellar mass distribution of the Milky Way. Many dedicated studies carried out over the last decade suggest that a dominant contributor to GDXE is a population of accreting white dwarfs (WDs). The question arises about relative contribution of different subclasses of accreting WD population, namely non-magnetic WD binaries, magnetic intermediate polars (IPs) and polars, in different regions of the Galaxy: the Galactic center, bulge, and ridge. Recent low-energy (E$<10$ keV) studies indicate that non-magnetic WD binaries, in particular quiescent dwarf novae, provide a major contribution to the diffuse hard X-ray emission of the Galactic bulge. From the other side, previous high energy (E$>10$ keV) X-ray measurements of the bulge and ridge imply a dominant population of magnetic CVs, in particular intermediate polars. In this work we use side aperture of the NuSTAR to probe the diffuse continuum of the inner $\sim1-3^{\circ}$ of the Galactic bulge, which allows us to constrain possible mixture of soft and hard populations components of the spectrum. We found that GDXE spectrum is well-described by a single-temperature thermal plasma with $kT \approx 8$ keV, which supports that the bulge is dominated by quiescent dwarf novae with no evidence of a significant intermediate polar population in the hard X-ray band. We also compare this result with previous NuSTAR measurements of the inner 10 pc and inner 100 pc of the Galactic center.

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