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MMS observations of large guide field symmetric reconnection between colliding reconnection jets at the center of a magnetic flux rope at the magnetopause
Author(s) -
Øieroset M.,
Phan T. D.,
Haggerty C.,
Shay M. A.,
Eastwood J. P.,
Gershman D. J.,
Drake J. F.,
Fujimoto M.,
Ergun R. E.,
Mozer F. S.,
Oka M.,
Torbert R. B.,
Burch J. L.,
Wang S.,
Chen L. J.,
Swisdak M.,
Pollock C.,
Dorelli J. C.,
Fuselier S. A.,
Lavraud B.,
Giles B. L.,
Moore T. E.,
Saito Y.,
Avanov L. A.,
Paterson W.,
Strangeway R. J.,
Russell C. T.,
Khotyaintsev Y.,
Lindqvist P. A.,
Malakit K.
Publication year - 2016
Publication title -
geophysical research letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.007
H-Index - 273
eISSN - 1944-8007
pISSN - 0094-8276
DOI - 10.1002/2016gl069166
Subject(s) - magnetic reconnection , physics , current sheet , magnetopause , electric field , plasmoid , astrophysics , magnetic flux , mechanics , geophysics , magnetic field , magnetohydrodynamics , magnetosphere , quantum mechanics
We report evidence for reconnection between colliding reconnection jets in a compressed current sheet at the center of a magnetic flux rope at Earth's magnetopause. The reconnection involved nearly symmetric inflow boundary conditions with a strong guide field of two. The thin (2.5 ion‐skin depth ( d i ) width) current sheet (at ~12 d i downstream of the X line) was well resolved by MMS, which revealed large asymmetries in plasma and field structures in the exhaust. Ion perpendicular heating, electron parallel heating, and density compression occurred on one side of the exhaust, while ion parallel heating and density depression were shifted to the other side. The normal electric field and double out‐of‐plane (bifurcated) currents spanned almost the entire exhaust. These observations are in good agreement with a kinetic simulation for similar boundary conditions, demonstrating in new detail that the structure of large guide field symmetric reconnection is distinctly different from antiparallel reconnection.

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