论文标题
洞察力HXMT的两年银河扫描调查的方法和性能
Methodology and Performance of the Two-Year Galactic Plane Scanning Survey of Insight-HXMT
论文作者
论文摘要
银河平面扫描调查是硬X射线调制望远镜(称为Insight-HXMT)的主要科学目标之一。在Insight-HXMT两年的两年操作中,已经进行了1000多个扫描观测值,并且整个银河平面($ \ rm 0^{\ circ} <l <360^{\ circ} $,$ \ rm -110^{\ rm -10^{\ circ} {\ circ} <b <10^{\ 10^{\ circ} $)已被完全覆盖。我们总结了洞察力HXMT的银河平面扫描调查两年,包括扫描数据的特征,数据分析过程以及低能望远镜的初步结果,中型能望远镜和高能量望远镜。使用光曲线PSF拟合方法,对于每个扫描观察,扫描区域中已知来源的通量以及通量误差。从SNR和通量的关系中,三个洞察力HXMT的$5σ$灵敏度估计为$ \ rm \ rm \ sim7.6 \ times10^{ - 11} 〜ERG cm^{ - 2} 〜s \ sim4.0 \ times10^{ - 10} 〜Erg〜cm^{ - 2} 〜s^{ - 1} $($ \ rm 20〜mcrab,〜7-40 kev $)和$ \ rm \ rm \ sim2.6 \ sim2.6 \ times10^{ - 10} MCRAB,〜25-100 kev $)分别扫描$ 2-3 $小时。截至2019年9月,三个望远镜监测了800多种具有各种类型的X射线源,并获得了三个具有三个能带的长期光曲线,以进行进一步的科学分析。
The Galactic plane scanning survey is one of the main scientific objectives of the Hard X-ray Modulation Telescope (known as Insight-HXMT). During the two-year operation of Insight-HXMT, more than 1000 scanning observations have been performed and the whole Galactic plane ($\rm 0^{\circ}<l<360^{\circ}$, $\rm -10^{\circ}<b<10^{\circ}$) has been covered completely. We summarize the Galactic plane scanning survey of Insight-HXMT for two years, including the characteristics of the scanning data, the data analysis process and the preliminary results of the Low-Energy telescope, the Medium-Energy telescope and the High-Energy telescope. With the light curve PSF fitting method, the fluxes of the known sources in the scanned area as well as the flux errors are obtained for each scanning observation. From the relationships of SNRs and fluxes, the $5σ$ sensitivities of three telescopes of Insight-HXMT are estimated as $\rm \sim7.6\times10^{-11}~erg cm^{-2}~s^{-1}$ ($\rm 3 mCrab,~1-6 keV$), $\rm \sim4.0\times10^{-10}~erg~cm^{-2}~s^{-1}$ ($\rm 20~mCrab,~7-40 keV$) and $\rm \sim2.6\times10^{-10}~erg cm^{-2}~s^{-1}$ ($\rm 18 mCrab,~25-100 keV$) for an individual scanning observation of $2-3$ hours, respectively. Up to September 2019, more than 800 X-ray sources with various types are monitored by the three telescopes and their long-term light curves with three energy bands are obtained to make further scientific analyses.