论文标题

模拟背景与HE,ME和LE板上Insight-HXMT的轨内观察的比较

Comparison of simulated backgrounds with in-orbit observations for HE, ME and LE onboard Insight-HXMT

论文作者

Zhang, Juan, Li, Xiaobo, Ge, Mingyu, Zhao, Haisheng, Tuo, Youli, Xie, Fei, Li, Gang, Zheng, Shijie, Nie, Jianyin, Song, Liming, Zhang, Aimei, Yang, Yanji, Chen, Yong

论文摘要

Insight-HXMT是中国的第一个X射线天文卫星,旨在揭示银河系中的新来源,并研究X射线二进制文件的基本物理学,从1 \,Kev,Kev至250 \ Kev,Kev。它具有三个准直望远镜,高能X射线望远镜(HE),中能X射线望远镜(ME)和低能X射线望远镜(LE)。在发布之前,已经通过Geant4模拟估算了这三个望远镜的轨道背景,以调查仪器性能和科学目标的实现。在这项工作中,将这些模拟背景与轨内观测进行了比较。所有三个望远镜都显示了良好的协议。对于他来说,1)在太空运行两年后,模拟的背景速率的偏差为$ \ sim5 \%$。 2)$ \ sim $ 67 \的总背景频谱和相对丰度,kev线在模拟和观察结果中显示长期增加。对我而言,1)模拟背景速率的偏差在观察结果中属于$ \ sim15 \%$,而2)在模拟和观察值的背景光谱中,没有明显的长期增加特征。对于LE,模拟给出的背景级别也与观测值一致。这些比较的一致性验证了所采用的Insight-HXMT质量模型,即所采用的空间环境组件和模型,所选的物理过程和构建的探测器构造是合理的。但是,该行的特征在$ \ sim $ 7.5 \,kev和8.0 \,kev中,在观察到的LE光谱中很明显,在模拟中并不明显。这可能是由于LE构造中的不确定性造成的。

Insight-HXMT, the first X-ray astronomical satellite in China, aims to reveal new sources in the Galaxy and to study fundamental physics of X-ray binaries from 1\,keV to 250\,keV. It has three collimated telescopes, the High Energy X-ray telescope (HE), the Medium Energy X-ray telescope (ME) and the Low Energy X-ray telescope (LE). Before the launch, in-orbit backgrounds of these three telescopes had been estimated through Geant4 simulation, in order to investigate the instrument performance and the achievement of scientific goals. In this work, these simulated backgrounds are compared with in-orbit observations. Good agreement is shown for all three telescopes. For HE, 1) the deviation of the simulated background rate after two years of operation in space is $\sim5\%$ from the observation; 2) the total background spectrum and the relative abundance of the $\sim$67\,keV line show long-term increases both in simulations and observations. For ME, 1) the deviation of simulated background rate is within $\sim15\%$ from the observation, and 2) there are no obvious long-term increase features in the background spectra of simulations and observations. For LE, the background level given by simulations is also consistent with observations. The consistencies of these comparisons validate that the Insight-HXMT mass model, i.e. space environment components and models adopted, physics processes selected and detector constructions built, is reasonable. However, the line features at $\sim$7.5\,keV and 8.0\,keV, which are obvious in the observed spectra of LE, are not evident in simulations. This might result from uncertainties in the LE constructions.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源