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Numerical simulation of plasma transport driven by the Io torusThe Rice convection model (RCM) has been modified to a form suitable for Jupiter (RCM-J) to study plasma interchange motion in and near the Io plasma torus. The net result of the interchange is that flux tubes, heavily loaded with torus plasma, are transported outward, to be replaced by tubes containing little low-energy (less than 1 keV) plasma. The process is numerically simulated in terms of time evolution from an initial torus that is longitudinally asymmetric and with gradually decreasing density outward from Io's orbit. In the simulations, the nonlinear stage of the instability characteristically exhibits outreaching fingers of heavily-loaded flux tubes that lengthen at an accelerating rate. The principal finding is that the primary geometrical form of outward transport of torus plasma in Jupiter's magnetosphere is through long, outward-moving fingers of plasma. In the simulations, the fingers mainly form in the active sector of the Io torus (the heavier side of the asymmetric torus), and they are spaced longitudinally roughly 20 deg apart.
Document ID
19920059052
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Yang, Y. S.
(NASA Headquarters Washington, DC United States)
Wolf, R. A.
(NASA Headquarters Washington, DC United States)
Spiro, R. W.
(NASA Headquarters Washington, DC United States)
Dessler, A. J.
(Rice University Houston, TX, United States)
Date Acquired
August 15, 2013
Publication Date
May 22, 1992
Publication Information
Publication: Geophysical Research Letters
Volume: 19
Issue: 10 M
ISSN: 0094-8276
Subject Category
Lunar And Planetary Exploration
Accession Number
92A41676
Funding Number(s)
CONTRACT_GRANT: NAGW-1833
CONTRACT_GRANT: NSF ATM-89-11031
CONTRACT_GRANT: NSF ATM-88-12860
CONTRACT_GRANT: NAGW-2683
Distribution Limits
Public
Copyright
Other

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