On the curlometer measurement of field-aligned and perpendicular currents in low Earth orbit: Swarm observations and whole geospace simulations

Fuente: arXiv
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Autori principali: Gajewski, R, Desai, RT, Hnat, B, Lin, D, Dunlop, MW, Fillion, M, Hulot, G, R, Shreedevi P, Walach, M-T, Panov, E, Leger, J-M, Jager, T, Fischer, D, Magnes, W, Blake, JA, Etchells, T
Natura: Preprint
Pubblicazione: 2026
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author Gajewski, R
Desai, RT
Hnat, B
Lin, D
Dunlop, MW
Fillion, M
Hulot, G
R, Shreedevi P
Walach, M-T
Panov, E
Leger, J-M
Jager, T
Fischer, D
Magnes, W
Blake, JA
Etchells, T
author_facet Gajewski, R
Desai, RT
Hnat, B
Lin, D
Dunlop, MW
Fillion, M
Hulot, G
R, Shreedevi P
Walach, M-T
Panov, E
Leger, J-M
Jager, T
Fischer, D
Magnes, W
Blake, JA
Etchells, T
contents Measuring field-aligned currents (FACs) using magnetic field observations provides a powerful means to probe the multi-scale interactions between the magnetosphere, ionosphere and thermosphere. In this study, we apply the curlometer technique to Swarm spacecraft observations and to simulations of the coupled magnetosphere-ionosphere system. We begin by correlating current density curlometer estimates derived from Swarm tetrahedra with varying spatial scales and barycentre locations. This confirms an apparent departure from stationarity for FACs at spatio-temporal scales below 100 km where measurements appear highly uncorrelated. We then analyse simulated magnetic perturbations, where true four-point measurements are available. This shows how, even at meso-scales of hundreds of kilometres, time-shifted FAC estimates can diverge significantly from this ground truth. In both observational and simulated data we find poor tetrahedral configurations can produce spurious perpendicular currents due to numerical instability in the inversion process. This can be mitigated using appropriate quality metrics and high-quality FAC reconstructions still achieved with a tetrahedral face well-aligned to the local magnetic field. These results highlight the dynamic nature of FACs at large as well as small scales, and underscore the substantial advantages of true four-point observations for their accurate analysis.
format Preprint
id arxiv_https___arxiv_org_abs_2604_18553
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle On the curlometer measurement of field-aligned and perpendicular currents in low Earth orbit: Swarm observations and whole geospace simulations
Gajewski, R
Desai, RT
Hnat, B
Lin, D
Dunlop, MW
Fillion, M
Hulot, G
R, Shreedevi P
Walach, M-T
Panov, E
Leger, J-M
Jager, T
Fischer, D
Magnes, W
Blake, JA
Etchells, T
Space Physics
Earth and Planetary Astrophysics
Geophysics
Plasma Physics
Measuring field-aligned currents (FACs) using magnetic field observations provides a powerful means to probe the multi-scale interactions between the magnetosphere, ionosphere and thermosphere. In this study, we apply the curlometer technique to Swarm spacecraft observations and to simulations of the coupled magnetosphere-ionosphere system. We begin by correlating current density curlometer estimates derived from Swarm tetrahedra with varying spatial scales and barycentre locations. This confirms an apparent departure from stationarity for FACs at spatio-temporal scales below 100 km where measurements appear highly uncorrelated. We then analyse simulated magnetic perturbations, where true four-point measurements are available. This shows how, even at meso-scales of hundreds of kilometres, time-shifted FAC estimates can diverge significantly from this ground truth. In both observational and simulated data we find poor tetrahedral configurations can produce spurious perpendicular currents due to numerical instability in the inversion process. This can be mitigated using appropriate quality metrics and high-quality FAC reconstructions still achieved with a tetrahedral face well-aligned to the local magnetic field. These results highlight the dynamic nature of FACs at large as well as small scales, and underscore the substantial advantages of true four-point observations for their accurate analysis.
title On the curlometer measurement of field-aligned and perpendicular currents in low Earth orbit: Swarm observations and whole geospace simulations
topic Space Physics
Earth and Planetary Astrophysics
Geophysics
Plasma Physics
url https://arxiv.org/abs/2604.18553