论文标题

中性大气密度测量使用洞察力-HXMT数据通过地球掩盖技术

Neutral Atmospheric Density Measurement Using Insight-HXMT Data by Earth Occultation Technique

论文作者

Xue, Wang-Chen, Li, Xiao-Bo, Xiong, Shao-Lin, Chen, Yong, Zhang, Shuang-Nan, Song, Li-Ming, Zhang, Shu, Ge, Ming-Yu, Tuo, You-Li, Li, Hai-Tao, Yu, Dao-Chun, Guo, Dong-Ya, Liu, Jia-Cong, Zhang, Yan-Qiu, Zheng, Chao

论文摘要

地球掩星技术在天文学和大气密度测量中都有广泛的应用。我们在6 keV和100 keV之间的能量上观察到的洞察力X射线调制望远镜(Insight-HXMT)观察到的螃蟹状星云的掩盖过程中构建了背景模型。我们提出了一种基于泊松和高斯统计数据的贝叶斯大气密度检索方法。通过对掩星期间X射线光子的大气衰减进行建模,我们同时检索了不同高度范围内大气的中性密度。我们的方法考虑了相邻大气层之间密度的相关性,并减少了先前工作可能受到的潜在系统偏见。基于光曲线拟合或光谱拟合的先前分析也丢失了数据的一些光谱或时间信息。与以前的工作相反,在我们的分析中,由三个望远镜在板上Insight-HXMT上观察到的掩盖数据进一步降低了密度检索的统计误差。我们使用我们的方法使用我们的方法,使用Insight-HXMT观察到的115组掩盖数据,对(半经验大气模型进行跨检查(半经验大气模型)。我们发现,在55---80 km,80---90 km和90--100 km的高度范围内,检索到的中性密度比广泛使用的大气模型NRLMSISE-00的值低约10%,约20%和约25%。我们还表明,新发布的大气模型NRLMSIS 2.0通常与我们的密度测量值一致。

The Earth occultation technique has broad applications in both astronomy and atmospheric density measurements. We construct the background model during the occultation of the Crab Nebula observed by the Insight-Hard X-ray Modulation Telescope (Insight-HXMT) at energies between 6 keV and 100 keV. We propose a Bayesian atmospheric density retrieval method based on the Earth occultation technique, combining Poisson and Gaussian statistics. By modeling the atmospheric attenuation of X-ray photons during the occultation, we simultaneously retrieved the neutral densities of the atmosphere at different altitude ranges. Our method considers the correlation of densities between neighboring atmospheric layers and reduces the potential systematic bias to which previous work may be subject. Previous analyses based on light curve fitting or spectral fitting also lost some spectral or temporal information of the data. In contrast to previous work, the occultation data observed by the three telescopes onboard Insight-HXMT is fully used in our analysis, further reducing the statistical error in density retrieval. We apply our method to cross-check the (semi-)empirical atmospheric models, using 115 sets of occultation data of the Crab Nebula observed by Insight-HXMT. We find that the retrieved neutral density is ~10%, ~20%, and ~25% less than the values of the widely used atmospheric model NRLMSISE-00, in the altitude range of 55--80 km, 80--90 km, and 90--100 km, respectively. We also show that the newly released atmospheric model NRLMSIS 2.0 is generally consistent with our density measurements.

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