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  • NAM2019
    • Registration
    • Key Dates & Outline Schedule
    • Practical Information
    • Exhibitors
    • Grants & Bursaries
    • Contacts
  • Science
    • Science Programme
    • Parallel Sessions
    • Plenary Talks
    • Community Session
    • Special Lunches
    • Posters
    • Presenter Guidelines
  • Social
    • What's On
    • Welcome Reception
    • RAS Awards Dinner
  • Media
  • Outreach
    • Outreach and Education Day
    • Fringe Event
    • School Visit Day
  • Lancaster
    • Travel
    • Accommodation
    • Childcare
    • Campus Map
    • About Lancaster
    • Code of Conduct

Programme by Session

Schedule

id
Tuesday
date time
PM2
Abstract
Correlation analysis of field-aligned currents measured by Swarm
LICA main space (A27-A29)

Abstract details

id
Correlation analysis of field-aligned currents measured by Swarm
Date Submitted
2019-03-12 19:58:55
Jim
Wild
STFC-UKRI and Beihang University
Mapping the influence of Magnetosphere-Ionosphere interactions on the surface magnetic field and grounded infrastructure
Poster
J.-Y. Yang (School of Space and Environment, Beihang University, 100191, Beijing, China), M. W. Dunlop (STFC-UKRI, Chilton, Oxfordshire, OX11 0QX, UK (This email address is being protected from spambots. You need JavaScript enabled to view it.), M. Freeman, N. Rogers, J. A. Wild, J. Rae, J.-B. Cao, H. Lühr, C. Xiong
The orientation of field-aligned current sheets (FACs) can be inferred from dual-spacecraft correlations of the FAC signatures between two or more Swarm spacecraft (A and C), using the maximum correlations obtained from sliding data segments. Statistical analysis of both the correlations and the inferred orientations shows clear trends in magnetic local time (MLT) which reveal the behaviour of both large and small scale currents. The maximum correlation coefficients show distinct behaviour in terms of either the time shift, or the shift in longitude between Swarm A and C for various filtering levels. The low-latitude FACs show the strongest correlations for a broad range of MLT centred on dawn and dusk, with a higher correlation coefficient on the dusk-side and lower correlations near noon and midnight. The current sheet orientations are shown to broadly follow the mean shape of the auroral boundary for the lower latitudes corresponding to Region 2 FACs and that these are most well-ordered on the dusk side. Together with these correlation trends, individual events have also been sampled by higher altitude spacecraft in conjunction with Swarm (mapping both to region 1 and 2), showing that two different domains of FACs are apparent: small-scale (some tens of km) which are time variable and large-scale (>100 km) which are rather stationary. We investigate further how these FAC regimes are dependent on geomagnetic activity, focusing on high activity events. The trends found here for different activities are compared to effects seen in the ground magnetometer signals (dH/dt).

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