论文标题
基于能量光谱拟合在用le/\ emph {Insight} -hxmt杀死过程中的能量光谱拟合基于能量光谱拟合的新方法
New method for Earth neutral atmospheric density retrieval based on energy spectrum fitting during occultation with LE/\emph{Insight}-HXMT
论文作者
论文摘要
我们提出了一种新方法,用于基于用硬X射线调制望远镜(\ emph {Insight} -HXMT)卫星,基于蟹状星云的X射线泥土掩盖在下部热层中检索大气数密度谱。通过大气对X射线的吸收和散射会导致X射线能量的变化,并且可以通过在模仿过程中在不同高度范围内拟合观察到的光谱和光谱模型来直接检索地球中性大气数密度。分析了2017年11月16日从LE/\ Emph {Insight} -HXMT进行的指向观测值,以获取高级数据产品,例如LightCurve,Energy Spertrum和detector Respents矩阵。结果表明,基于90--200 km高度范围内的光谱拟合的检索结果明显低于NRLMSISE-00模型获得的大气密度,尤其是在110--120 km的高度范围内,检索到的结果的结果比模型值低34.4 \%。通过新方法检索的大气密度与先前独立的X射线掩盖结果一致(Destran等,2007; Katsuda等,2021),它们也低于经验模型预测。此外,检索结果的准确性随着海拔高度的增加150--200 km而降低,并且在分析了将来的大量X射线隐匿性数据后,将进一步分析准确的定量描述。
We propose a new method for retrieving the atmospheric number density profile in the lower thermosphere, based on the X-ray Earth occultation of the Crab Nebula with the Hard X-ray Modulation Telescope (\emph{Insight}-HXMT) Satellite. The absorption and scattering of X-rays by the atmosphere result in changes in the X-ray energy, and the Earth's neutral atmospheric number density can be directly retrieved by fitting the observed spectrum and spectrum model at different altitude ranges during the occultation process. The pointing observations from LE/\emph{Insight}-HXMT on 16 November 2017 are analyzed to obtain high-level data products such as lightcurve, energy spectrum and detector response matrix. The results show that the retrieved results based on the spectrum fitting in the altitude range of 90--200 km are significantly lower than the atmospheric density obtained by the NRLMSISE-00 model, especially in the altitude range of 110--120 km, where the retrieved results are 34.4\% lower than the model values. The atmospheric density retrieved by the new method is qualitatively consistent with previous independent X-ray occultation results (Determan et al., 2007; Katsuda et al., 2021), which are also lower than empirical model predictions. In addition, the accuracy of atmospheric density retrieved results decreases with the increase of altitude in the altitude range of 150--200 km, and the accurate quantitative description will be further analyzed after analyzing a large number of X-ray occultation data in the future.