Auroral molecular-emission effects on the atomic oxygen line at 777.4 nm

Source at https://doi.org/10.1186/s40623-018-0936-z . One of the representative auroral emission lines that radiates from F-region heights and is measurable on the ground is the 777.4 nm line from excited atomic oxygen. This line has been adopted, along with another E-region emission line, for examp...

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Published in:Earth, Planets and Space
Main Authors: Oyama, Shin-Ichiro, Tsuda, Takuo T., Hosokawa, Keisuke, Ogawa, Yasunobu, Miyoshi, Yoshizumi, Kurita, Satoshi, Kero, Antti, Fujii, Ryochi, Tanaka, Yoshimasa, Mizuno, Akira, Kawabata, Tetsuya, Gustavsson, Björn Johan, Leyser, Thomas
Format: Article in Journal/Newspaper
Language:English
Published: SpringerOpen 2018
Subjects:
Online Access:https://hdl.handle.net/10037/14717
https://doi.org/10.1186/s40623-018-0936-z
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author Oyama, Shin-Ichiro
Tsuda, Takuo T.
Hosokawa, Keisuke
Ogawa, Yasunobu
Miyoshi, Yoshizumi
Kurita, Satoshi
Kero, Antti
Fujii, Ryochi
Tanaka, Yoshimasa
Mizuno, Akira
Kawabata, Tetsuya
Gustavsson, Björn Johan
Leyser, Thomas
author_facet Oyama, Shin-Ichiro
Tsuda, Takuo T.
Hosokawa, Keisuke
Ogawa, Yasunobu
Miyoshi, Yoshizumi
Kurita, Satoshi
Kero, Antti
Fujii, Ryochi
Tanaka, Yoshimasa
Mizuno, Akira
Kawabata, Tetsuya
Gustavsson, Björn Johan
Leyser, Thomas
author_sort Oyama, Shin-Ichiro
collection University of Tromsø: Munin Open Research Archive
container_issue 1
container_title Earth, Planets and Space
container_volume 70
description Source at https://doi.org/10.1186/s40623-018-0936-z . One of the representative auroral emission lines that radiates from F-region heights and is measurable on the ground is the 777.4 nm line from excited atomic oxygen. This line has been adopted, along with another E-region emission line, for example 427.8 nm, to estimate the mean energy and total energy flux of precipitating auroral electrons. The influence of emissions from part of the molecular nitrogen band, which mainly radiate from E-region heights, should be carefully evaluated because it might overlap the 777.4 nm atomic oxygen line in the spectrum. We performed statistical analysis of auroral spectrograph measurements that were obtained during the winter of 2016–2017 in Tromsø, Norway, to derive the ratio of the intensity of the 777.4 nm atomic oxygen line to that of the net measurement through a typically used optical filter with a full width at half maximum of a few nm. The ratio had a negative trend against geomagnetic activity, with a primary distribution of 0.5–0.7 and a minimum value of 0.3 for the most active auroral condition in this study. This result suggests that the 30–50% emission intensities measured through the optical filter may be from the molecular nitrogen band.
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spelling ftunivtroemsoe:oai:munin.uit.no:10037/14717 2025-04-13T14:18:07+00:00 Auroral molecular-emission effects on the atomic oxygen line at 777.4 nm Oyama, Shin-Ichiro Tsuda, Takuo T. Hosokawa, Keisuke Ogawa, Yasunobu Miyoshi, Yoshizumi Kurita, Satoshi Kero, Antti Fujii, Ryochi Tanaka, Yoshimasa Mizuno, Akira Kawabata, Tetsuya Gustavsson, Björn Johan Leyser, Thomas 2018-10-16 https://hdl.handle.net/10037/14717 https://doi.org/10.1186/s40623-018-0936-z eng eng SpringerOpen Earth Planets and Space FRIDAID 1674549 https://hdl.handle.net/10037/14717 openAccess VDP::Mathematics and natural science: 400::Physics: 430 VDP::Matematikk og Naturvitenskap: 400::Fysikk: 430 Aurora Ionosphere Magnetosphere Spectrograph EISCAT Journal article Tidsskriftartikkel Peer reviewed 2018 ftunivtroemsoe https://doi.org/10.1186/s40623-018-0936-z 2025-03-14T05:17:56Z Source at https://doi.org/10.1186/s40623-018-0936-z . One of the representative auroral emission lines that radiates from F-region heights and is measurable on the ground is the 777.4 nm line from excited atomic oxygen. This line has been adopted, along with another E-region emission line, for example 427.8 nm, to estimate the mean energy and total energy flux of precipitating auroral electrons. The influence of emissions from part of the molecular nitrogen band, which mainly radiate from E-region heights, should be carefully evaluated because it might overlap the 777.4 nm atomic oxygen line in the spectrum. We performed statistical analysis of auroral spectrograph measurements that were obtained during the winter of 2016–2017 in Tromsø, Norway, to derive the ratio of the intensity of the 777.4 nm atomic oxygen line to that of the net measurement through a typically used optical filter with a full width at half maximum of a few nm. The ratio had a negative trend against geomagnetic activity, with a primary distribution of 0.5–0.7 and a minimum value of 0.3 for the most active auroral condition in this study. This result suggests that the 30–50% emission intensities measured through the optical filter may be from the molecular nitrogen band. Article in Journal/Newspaper EISCAT Tromsø University of Tromsø: Munin Open Research Archive Norway Tromsø Earth, Planets and Space 70 1
spellingShingle VDP::Mathematics and natural science: 400::Physics: 430
VDP::Matematikk og Naturvitenskap: 400::Fysikk: 430
Aurora
Ionosphere
Magnetosphere
Spectrograph
EISCAT
Oyama, Shin-Ichiro
Tsuda, Takuo T.
Hosokawa, Keisuke
Ogawa, Yasunobu
Miyoshi, Yoshizumi
Kurita, Satoshi
Kero, Antti
Fujii, Ryochi
Tanaka, Yoshimasa
Mizuno, Akira
Kawabata, Tetsuya
Gustavsson, Björn Johan
Leyser, Thomas
Auroral molecular-emission effects on the atomic oxygen line at 777.4 nm
title Auroral molecular-emission effects on the atomic oxygen line at 777.4 nm
title_full Auroral molecular-emission effects on the atomic oxygen line at 777.4 nm
title_fullStr Auroral molecular-emission effects on the atomic oxygen line at 777.4 nm
title_full_unstemmed Auroral molecular-emission effects on the atomic oxygen line at 777.4 nm
title_short Auroral molecular-emission effects on the atomic oxygen line at 777.4 nm
title_sort auroral molecular-emission effects on the atomic oxygen line at 777.4 nm
topic VDP::Mathematics and natural science: 400::Physics: 430
VDP::Matematikk og Naturvitenskap: 400::Fysikk: 430
Aurora
Ionosphere
Magnetosphere
Spectrograph
EISCAT
topic_facet VDP::Mathematics and natural science: 400::Physics: 430
VDP::Matematikk og Naturvitenskap: 400::Fysikk: 430
Aurora
Ionosphere
Magnetosphere
Spectrograph
EISCAT
url https://hdl.handle.net/10037/14717
https://doi.org/10.1186/s40623-018-0936-z