HR: 1330h
AN: SM22B-0243 [PDF]
TI: Plasma Sheet Thickness at Jupiter From Galileo Electron Density Measurements
AU: * Ansher, J A
EM: ansher@phy.ilstu.edu
AF: Illinois State University, Department of Physics
Campus Box 4560, Normal, IL 61790-4560 United States
AU: Gurnett, D A
EM: donald-gurnett@uiowa.edu
AF: University of Iowa, Department of Physics
Van Allen Hall, Iowa City, IA 52242 United States
AU: Holland, D L
EM: holland@phy.ilstu.edu
AF: Illinois State University, Department of Physics
Campus Box 4560, Normal, IL 61790-4560 United States
AU: Martin, R F
EM: rfm@phy.ilstu.edu
AF: Illinois State University, Department of Physics
Campus Box 4560, Normal, IL 61790-4560 United States
AB:
Electron density has been determined throughout much of the Galileo primary mission at Jupiter (December 7, 1995 to November
6, 1997) by observing plasma waves measured by the plasma wave instrument on board the spacecraft. The density data set is
used here to identify spacecraft encounters with Jupiter's magnetotail plasma sheet during the primary mission by assuming
that electron density is highest at the center of the plasma sheet. As Jupiter rotates, the spacecraft encounters one pair
of plasma sheet crossings during each ten-hour rotation period. Electron density is usually seen to increase as Galileo
enters the plasma sheet, reach a maximum value near the center of the plasma sheet, and then decrease as the spacecraft exits
the plasma sheet. This signature is clearest in the data at radial distances between 20 RJ, and 50 RJ from Jupiter. Plasma
sheet thickness is determined by identifying the z-coordinate of the spacecraft as it enters and exits the plasma sheet.
This z-coordinate can be measured with respect to a number of different coordinate systems and magnetic field models.
Through analysis of plasma sheet thickness in Jupiter's magnetotail, we observe a thicker plasma sheet in the midnight and
dusk sectors and a thinner, more distinct sheet in Jupiter's dawn sector. These observations are consistent with magnetic
field signatures reported by the Galileo magnetometer team.
DE: 2740 Magnetospheric configuration and dynamics
DE: 2756 Planetary magnetospheres (5443, 5737, 6030)
DE: 2764 Plasma sheet
SC: SPA - Magnetospheric Physics [SM]
MN: 2003 Fall Meeting