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Titel Comparison of large-scale Birkeland currents determined from Iridium and SuperDARN data
VerfasserIn D. L. Green, C. L. Waters, B. J. Anderson, H. Korth, R. J. Barnes
Medientyp Artikel
Sprache Englisch
ISSN 0992-7689
Digitales Dokument URL
Erschienen In: Annales Geophysicae ; 24, no. 3 ; Nr. 24, no. 3 (2006-05-19), S.941-959
Datensatznummer 250015522
Publikation (Nr.) Volltext-Dokument vorhandencopernicus.org/angeo-24-941-2006.pdf
 
Zusammenfassung
The Birkeland currents, J||, electrically couple the high latitude ionosphere with the near Earth space environment. Approximating the spatial distribution of the Birkeland currents may be achieved using the divergence of the ionospheric electric field, $vec E_{perp}$, assuming zero conductance gradients such that $J_{parallel}$$approx$ $Sigma_{rm p}$$vecnabla$${cdot}$ $vec E_{perp}$. In this paper, electric field data derived from the Super Dual Auroral Radar Network (SuperDARN) are used to calculate $Sigma_{rm p}$$vecnabla$${cdot}$ $vec E_{perp}$, which is compared with the Birkeland current distribution derived globally from the constellation of Iridium satellites poleward of 60° magnetic latitude. We find that the assumption of zero conductance gradients is often a poor approximation. On the dayside, in regions where the SuperDARN electric field is constrained by radar returns, the agreement in the locations of regions of upward and downward current between $Sigma_{rm p}$$vecnabla$${cdot}$ $vec E_{perp}$ and J|| obtained from Iridium data is reasonable with differences of less than 3° in the latitudinal location of major current features. It is also shown that away from noon, currents arising from conductance gradients can be larger than the $Sigma_{rm p}$$vecnabla$${cdot}$ $vec E_{perp}$ component. By combining the $Sigma_{rm p}$$vecnabla$${cdot}$ $vec E_{perp}$ estimate in regions of radar coverage with in-situ estimates of conductance gradients from DMSP satellite particle data, the agreement with the Iridium derived J|| is considerably improved. However, using an empirical model of ionospheric conductance did not account for the conductance gradient current terms. In regions where radar data are sparse or non-existent and therefore constrained by the statistical potential model the $Sigma_{rm p}$$vecnabla$${cdot}$ $vec E_{perp}$ approximation does not agree with J|| calculated from Iridium data.
 
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