density distribution in the nightside ionosphere reconstructed from ISS-IMAP/EUVI data

The [Formula omitted] density distribution in the nightside ionosphere has been reconstructed from extreme ultraviolet (EUV) images taken by the EUVI-B imager of the International Space Station Ionosphere, Mesosphere, upper Atmosphere, and Plasmasphere mapping (ISS-IMAP) cameras. The EUVI-B imager c...

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Veröffentlicht in:Earth, planets, and space planets, and space, 2024-12, Vol.76 (1)
Hauptverfasser: Nakano, Shin'ya, Hozumi, Yuta, Saito, Akinori, Yoshikawa, Ichiro, Yamazaki, Atsushi, Yoshioka, Kazuo, Murakami, Go
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Sprache:eng
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Zusammenfassung:The [Formula omitted] density distribution in the nightside ionosphere has been reconstructed from extreme ultraviolet (EUV) images taken by the EUVI-B imager of the International Space Station Ionosphere, Mesosphere, upper Atmosphere, and Plasmasphere mapping (ISS-IMAP) cameras. The EUVI-B imager covers the wavelength range from about 70 nm to 110 nm and mainly observes the 91.1 nm emission from the recombination of [Formula omitted] ions and electrons. Assuming that the electron density is equal to the [Formula omitted] density in the F-region where the imager observes, the EUV intensity observed by EUVI-B is approximately proportional to the line-of-sight integral of the square of the [Formula omitted] density. This enables us to estimate the [Formula omitted] density distribution in the F-region from a sequence of EUVI-B data in each International Space Station (ISS) orbit with a Bayesian method. We demonstrate the reconstruction of the [Formula omitted] distribution. In particular, the [Formula omitted] density structure of the equatorial ionization anomaly (EIA) in the vicinity of an ISS orbit is obtained.
ISSN:1343-8832
DOI:10.1186/s40623-023-01947-9