kth.sePublications KTH
Change search
CiteExportLink to record
Permanent link

Direct link
Cite
Citation style
  • apa
  • ieee
  • modern-language-association-8th-edition
  • vancouver
  • Other style
More styles
Language
  • de-DE
  • en-GB
  • en-US
  • fi-FI
  • nn-NO
  • nn-NB
  • sv-SE
  • Other locale
More languages
Output format
  • html
  • text
  • asciidoc
  • rtf
Joint observations of oxygen atmospheric band emissions using OSIRIS and the MATS satellite
Department of Meteorology, Stockholm University, Stockholm, Sweden.ORCID iD: 0009-0003-7558-5373
Department of Meteorology, Stockholm University, Stockholm, Sweden.
Department of Space, Earth and Environment, Chalmers University of Technology, Gothenburg, Sweden.ORCID iD: 0000-0003-1539-3559
Department of Meteorology, Stockholm University, Stockholm, Sweden.
Show others and affiliations
2025 (English)In: Atmospheric Measurement Techniques, ISSN 1867-1381, E-ISSN 1867-8548, Vol. 18, no 17, p. 4453-4466Article in journal (Refereed) Published
Abstract [en]

The MATS (Mesospheric Airglow/Aerosol Tomography and Spectroscopy) satellite was launched in November 2022 and began collecting scientific measurements of the mesosphere and lower thermosphere (MLT) in early 2023. The satellite utilises a multichannel limb-viewing instrument designed to gather images across six distinct spectral bands, each selected to capture atmospheric airglow from O2 atmospheric band emissions and light scattered by noctilucent clouds (NLC). This article presents a comparison between the MATS limb measurements and the observations made by the OSIRIS spectrograph on the Odin satellite. Specifically, airglow signals from excited O2, as recorded by MATS infrared (IR) channels and OSIRIS, are analysed over the polar regions under temporally and spatially aligned conditions. From December 2022 to February 2023, 36 close encounters of the two satellites were identified and analysed. The results show that the two instruments agree well on the overall structure but that the MATS signals generally exceed OSIRIS by ∼ 20 % in magnitude. OSIRIS measurements are also compared to the radiative transfer model SASKTRAN to investigate stray light impact on the measurements.

Place, publisher, year, edition, pages
Copernicus GmbH , 2025. Vol. 18, no 17, p. 4453-4466
National Category
Meteorology and Atmospheric Sciences
Identifiers
URN: urn:nbn:se:kth:diva-373742DOI: 10.5194/amt-18-4453-2025ISI: 001568010800001Scopus ID: 2-s2.0-105022503574OAI: oai:DiVA.org:kth-373742DiVA, id: diva2:2019613
Note

QC 20251208

Available from: 2025-12-08 Created: 2025-12-08 Last updated: 2025-12-08Bibliographically approved

Open Access in DiVA

No full text in DiVA

Other links

Publisher's full textScopus

Authority records

Ivchenko, Nickolay

Search in DiVA

By author/editor
Linder, BjörnMurtagh, Donal P.Krasauskas, LukasChristensen, Ole MartinIvchenko, Nickolay
By organisation
Space and Plasma Physics
In the same journal
Atmospheric Measurement Techniques
Meteorology and Atmospheric Sciences

Search outside of DiVA

GoogleGoogle Scholar

doi
urn-nbn

Altmetric score

doi
urn-nbn
Total: 58 hits
CiteExportLink to record
Permanent link

Direct link
Cite
Citation style
  • apa
  • ieee
  • modern-language-association-8th-edition
  • vancouver
  • Other style
More styles
Language
  • de-DE
  • en-GB
  • en-US
  • fi-FI
  • nn-NO
  • nn-NB
  • sv-SE
  • Other locale
More languages
Output format
  • html
  • text
  • asciidoc
  • rtf