In Situ Observations of a Magnetosheath High‐Speed Jet Triggering Magnetopause Reconnection

Magnetosheath high‐speed jets—localized dynamic pressure enhancements typically of ∼1 Earth radius in size—impact the dayside magnetopause several times per hour. Here we present the first in situ measurements suggesting that such an impact triggered magnetopause reconnection. We use observations fr...

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Veröffentlicht in:Geophysical research letters 2018-02, Vol.45 (4), p.1732-1740
Hauptverfasser: Hietala, H., Phan, T. D., Angelopoulos, V., Oieroset, M., Archer, M. O., Karlsson, T., Plaschke, F.
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Sprache:eng
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Zusammenfassung:Magnetosheath high‐speed jets—localized dynamic pressure enhancements typically of ∼1 Earth radius in size—impact the dayside magnetopause several times per hour. Here we present the first in situ measurements suggesting that such an impact triggered magnetopause reconnection. We use observations from the five Time History of Events and Macroscale Interactions during Substorms spacecraft in a string‐of‐pearls configuration on 7 August 2007. The spacecraft recorded magnetopause in‐and‐out motion during an impact of a magnetosheath jet (VN∼−300 km/s along the magnetopause normal direction). There was no evidence for reconnection for the preimpact crossing, yet three probes observed reconnection after the impact. We infer that the jet impact compressed the originally thick (60–70 di), high magnetic shear (140–160° magnetopause until it was thin enough for reconnection to occur. Magnetosheath high‐speed jets could therefore act as a driver for bursty dayside reconnection. Key Points THEMIS probes (string‐of‐pearls formation) recorded magnetopause in‐and‐out motion during jet impact No reconnection flows for the preimpact crossing; three probes observed reconnection after the impact Compression by the high‐pressure jet initiated reconnection in an originally thick magnetopause
ISSN:0094-8276
1944-8007
1944-8007
DOI:10.1002/2017GL076525