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Large-scale dune aurora event investigation combining Citizen Scientists' photographs and spacecraft observations

Authors :
Martin G. Mlynczak
Milla Kalliokoski
Minna Palmroth
Mark Ferrier
Larry J. Paxton
Knut Holmseth
Maxime Grandin
Jukka Hilska
Graeme Whipps
Kjetil Vinorum
Barry Whenman
Particle Physics and Astrophysics
Space Physics Research Group
Department of Physics
Doctoral Programme in Particle Physics and Universe Sciences
Publication Year :
2021
Publisher :
Copernicus GmbH, 2021.

Abstract

Recently, citizen scientist photographs led to the discovery of a new auroral form called "the dune aurora" which exhibits parallel stripes of brighter emission in the green diffuse aurora at about 100 km altitude. This discovery raised several questions, such as (i) whether the dunes are associated with particle precipitation, (ii) whether their structure arises from spatial inhomogeneities in the precipitating fluxes or in the underlying neutral atmosphere, and (iii) whether they are the auroral manifestation of an atmospheric wave called a mesospheric bore. This study investigates a large-scale dune aurora event on 20 January 2016 above Northern Europe. The dunes were observed from Finland to Scotland, spanning over 1500 km for at least four hours. Spacecraft observations confirm that the dunes are associated with electron precipitation and reveal the presence of a temperature inversion layer below the mesopause during the event, creating suitable conditions for mesospheric bore formation. The analysis of a time lapse of pictures by a citizen scientist from Scotland leads to the estimate that, during this event, the dunes propagate toward the west-southwest direction at about 200 m/s, presumably indicating strong horizontal winds near the mesopause. These results show that citizen science and dune aurora studies can fill observational gaps and be powerful tools to investigate the least-known region of near-Earth space at altitudes near 100 km.

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....4c8ea1164ffacbe7761590c74af14aea
Full Text :
https://doi.org/10.5194/egusphere-egu21-5986