Corotating magnetospheric convection
Creators
- 1. Space Physics and Astronomy Department, Rice University, Houston, Texas 77001
Description
The longitudinal asymmetry of the Io plasma torus, as predicted by the magnetic-anomaly model and observed by Earth-based optical astronomy, provides a driving mechanism for a corotating convection system in Jupiter's magnetosphere. Here we deduce some qualitative properties of this convection system from the general equations that govern a steady state corotating convection system (although we expect that time-dependent effects may also have to be included for a complete description of Jovian convection). The corotating convection system appears capable of providing both the dominant radial transport mechanism (with a time scale possibly as short as a few rotation periods) and the dominant mechanism for extracting energy from Jupiter's rotation (at a rate approx.1015 W) for driving a wide variety of magnetospheric phenomena. A similar corotating convection system may occur in other rotation-dominated magnetospheres, for example, those of pulsars and Saturn
Additional details
Publishing Information
- Journal Title
- J. Geophys. Res.
- Journal Volume
- 86
- Journal Issue
- A11
- Series
- J. Geophys. Res.
- Journal Page Range
- 9020-9028
- ISSN
- 0022-1406
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 13667085
- Subject category
- S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
- Descriptors DEI
- CONVECTION; JUPITER PLANET; MAGNETIC FIELD CONFIGURATIONS; PLANETARY MAGNETOSPHERES; PLASMA ACCELERATION; PLASMA DRIFT; ROTATION; SATELLITES; SULFUR OXIDES
- Descriptors DEC
- ACCELERATION; ATMOSPHERES; CHALCOGENIDES; ENERGY TRANSFER; HEAT TRANSFER; OXIDES; OXYGEN COMPOUNDS; PLANETARY ATMOSPHERES; PLANETS; SULFUR COMPOUNDS