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Vertical Structure of the Arctic Spring Transition in the Middle Atmosphere

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BORIS DOI
10.48620/87106
Date of Publication
May 13, 2021
Publication Type
Article
Division/Institute

Institute of Applied ...

Institute of Applied ...

Author
Matthias, Vivien
Stober, Gunter
Institute of Applied Physics, Microwaves
Institute of Applied Physics (IAP)
Kozlovsky, Alexander
Lester, Mark
Belova, Evgenia
Kero, Johan
Series
Journal of Geophysical Research: Atmospheres
ISSN or ISBN (if monograph)
2169-897X
2169-8996
Publisher
American Geophysical Union
Language
English
Publisher DOI
10.1029/2020jd034353
Description
In the middle atmosphere, spring transition is the time period where the zonal circulation reverses from winter westerly to summer easterly which has a strong impact on the vertical wave propagation influencing the ionospheric variability. The spring transition can be rapid in form of a final sudden stratospheric warming (SSW, mainly dynamically driven) or slow (mainly radiatively driven) but also intermediate stages can occur. In most studies spring transitions are classified either by their timing of occurrence or by their vertical structure. However, all these studies focus exclusively on the stratosphere and it is not clear if and how pre‐winter conditions have an impact on when and how spring transitions take place. Here we classify the spring transitions regarding their vertical‐temporal development beginning in January and spanning the whole middle atmosphere in the core region of the polar vortex. This leads to five classes where the timing of the SSW in the preceding winter and a downward propagating Northern Annular Mode plays a crucial role. First, we use Microwave Limb Sounder satellite data to describe the five classes for recent single years, and then we use Modern‐Era Retrospective analysis for Research and Applications Version 2 reanalysis data for a composite analysis. The results show distinctive differences between the five classes in the months before the spring transition especially in the mesosphere. We hypothesize that this will help to improve the prediction of the spring transition. Additionally, meteor radar winds are used to link spring transition effects in the upper mesosphere and lower thermosphere with the stratospheric final warming.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/208586
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JGR Atmospheres - 2021 - Matthias - Vertical Structure of the Arctic Spring Transition in the Middle Atmosphere.pdftextAdobe PDF4.99 MBAttribution-NonCommercial-NoDerivatives (CC BY-NC-ND 4.0)publishedOpen
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