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基于OI130.4nm光谱数据的热层O/N_2反演方法
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作者 王静 唐义 +1 位作者 南一冰 倪国强 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2015年第8期2263-2267,共5页
提出了一种由OI 130.4nm日气辉光谱数据反演热层O/N2的方法。建立了两者在观测天底和太阳天顶方向的数学模型,并利用辐射强度随观测角和太阳天顶角的变化特性,构建了观测角和太阳天顶角归一化系数查找表,提出了一种由OI 130.4nm日气辉... 提出了一种由OI 130.4nm日气辉光谱数据反演热层O/N2的方法。建立了两者在观测天底和太阳天顶方向的数学模型,并利用辐射强度随观测角和太阳天顶角的变化特性,构建了观测角和太阳天顶角归一化系数查找表,提出了一种由OI 130.4nm日气辉辐射反演热层O/N2的方法,并在算法中引入了偏差系数校正。最后,由计算得到的450个气辉辐射为例进行了O/N2的反演,反演误差分别为4.16%和27.05%。结果表明,提出的算法能够重现其大部分结构特征,与以往算法相比具有明显的优越性。 展开更多
关键词 OI 130.4nm 日气辉 反演 偏差校正
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A new strategy for ionospheric remote sensing using the 130.4/135.6 nm airglow intensity ratios 被引量:2
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作者 XiaoHan Yin JianQi Qin Larry J.Paxton 《Earth and Planetary Physics》 CAS CSCD 2023年第4期445-459,共15页
We demonstrate here that global-scale determination of a key ionospheric parameter,the peak height of the F_(2)region(h_(m)F_(2)),can be obtained by making a simple ratio measurement of the atomic oxygen 130.4 and 135... We demonstrate here that global-scale determination of a key ionospheric parameter,the peak height of the F_(2)region(h_(m)F_(2)),can be obtained by making a simple ratio measurement of the atomic oxygen 130.4 and 135.6 nm emissions in the far-ultraviolet nightglow with a nadir-viewing system such as a pair of photometers suitable for flight on a CubeSat.We further demonstrate that measurements from an altitude that is within the typical range of nighttime h_(m)F_(2)250−450 km can provide the ratios that are needed for retrieval of the h_(m)F_(2).Our study is conducted mostly through numerical simulations by using radiative transfer models of the two emissions coupled with empirical models of the atmosphere and ionosphere.Modeling results show that the relationship between the h_(m)F_(2)and the intensity ratio is sensitive to the altitude from which the emissions are observed,primarily because of the distinctly different degrees of resonant scattering of the two emissions in the atmosphere.A roughly quadratic relationship can be established for observations from an orbit of~400 km,which enables h_(m)F_(2)retrieval.Parametric analysis indicates that the relationship can be affected by the ambient atmospheric conditions through resonant scattering and O2 absorption.For typical nighttime conditions with h_(m)F_(2)250−450 km,retrieval of the h_(m)F_(2)from synthetic observations shows that the typical errors are only a few kilometers(up to~20 km),depending on the accuracy of the ambient conditions predicted by the empirical models.Our findings pave the way for use of the 130.4/135.6 nm intensity ratios for global-scale monitoring of the nighttime ionosphere at mid to low latitudes. 展开更多
关键词 nighttime ionosphere far-ultraviolet remote sensing 130.4/135.6 nm airglow intensity ratio peak height of the F_(2)region(h_(m)F_(2)) TIMED observation
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