Investigation of ionospheric of remote sensing using the 834-angstrom airglow

被引:31
作者
Picone, JM
Meier, RR
Kelley, OA
Dymond, KF
Thomas, RJ
MelendezAlvira, DJ
McCoy, RP
机构
[1] GEORGE MASON UNIV, INST COMPUTAT SCI & INFORMAT, FAIRFAX, VA 22030 USA
[2] NEW MEXICO INST MIN & TECHNOL, DEPT ELECT ENGN, SOCORRO, NM 87801 USA
[3] OFF NAVAL RES, ARLINGTON, VA 22217 USA
关键词
D O I
10.1029/96JA03314
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We have studied the feasibility of ionospheric O+ remote sensing through measurements of the 834-Angstrom airglow. Our approach uses discrete inverse theory (DIT) to retrieve O+ number density profiles from the airglow. Our tests of this method assume observations by a limb-scanning system on an orbiting satellite at an altitude of 850 km. The scans cover the range of 10 degrees-26.5 degrees below horizontal, consistent with future multiyear missions. To provide a baseline assessment, we represent the synthetic ground truth (''true'') O+ distribution as a generalized Chapman-type profile with three or more parameters, based on our recent analysis of topside incoherent scattering radar data and standard ionospheric models (International Reference Ionosphere 1990 (IRI-90) and the parameterized ionospheric model (PIM)). The DIT method proves to be robust, converging to an accurate solution for a wide variation in ionospheric profiles. Using a detailed statistical error analysis of synthetic limb intensity data derived from the IRI-90 and PIM models, we work a difficult test case following from recent comments on the concept of 834-Angstrom remote sensing of ionospheric O+. We find that the DIT method can correctly distinguish between distinctly different F layers that produce nearly identical intensity profiles, consistent with instrument specifications for future missions.
引用
收藏
页码:2441 / 2456
页数:16
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