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dc.contributor.authorBotek, E.
dc.contributor.authorPierrard, V.
dc.contributor.authorDarrouzet, F.
dc.date2021
dc.date.accessioned2022-01-06T12:45:49Z
dc.date.available2022-01-06T12:45:49Z
dc.identifier.urihttps://orfeo.belnet.be/handle/internal/9675
dc.descriptionThe Space Weather Integrated Forecasting Framework (SWIFF) Plasmasphere Model (SPM) is a 3D kinetic model of the plasmasphere coupled to the ionosphere. This combined system has been routinely used to evaluate principally the plasmapause formation and evolution, and the plasmasphere’s dynamics. The model contains analytical equations for the plasmasphere and plasmatrough regions that have been empirically determined using observations of satellite and ground-based data. In the present work, a revision of the plasmatrough equations is proposed using electron density data from the Van Allen Probes mission and paying particular attention to the spatiotemporal variation as well as to geomagnetic activity influence. Comparisons are performed with other parametrizations and with electron density data from the Arase mission. This assessment demonstrates that the plasmatrough electron density was slightly underestimated with respect to the new observations, in particular for high L values (L > 3) and high geomagnetic activity. In addition, the overall performance of the new parametrization follows a satisfactory general trend despite a large variability of density data observed in the plasmatrough. The plasmatrough is separated from the refilling zone in the model by considering vestigial and outer edge plasmapause positions.
dc.languageeng
dc.titleAssessment of the Earth’s Cold Plasmatrough Modeling by Using Van Allen Probes/EMFISIS and Arase/PWE Electron Density Data
dc.typeArticle
dc.subject.frascatiPhysical sciences
dc.audienceScientific
dc.subject.freeplasmasphere
dc.subject.freeplasmatrough
dc.subject.freeelectron density
dc.subject.freeplasmapause
dc.subject.freeSPM
dc.subject.freeVan Allen Probes
dc.subject.freeArase
dc.source.titleJournal of Geophysical Research: Space Physics
dc.source.volume126
dc.source.issue12
dc.source.pagee2021JA029737
Orfeo.peerreviewedYes
dc.identifier.doi10.1029/2021JA029737
dc.identifier.scopus


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