HR: 0800h
AN: P51A-1403 [Abstracts]
TI: Plasma Transition Across the Bow Shock at Saturn: Initial Results From the Cassini Plasma
Spectrometer
AU: * Rymer, A M
EM: amr@mssl.ucl.ac.uk
AF: Mullard Space Science Laboratory, Holmbury St Mary, Surrey, RH5 6NT
United Kingdom
AU: Coates, A J
EM: ajc@mssl.ucl.ac.uk
AF: Mullard Space Science Laboratory, Holmbury St Mary, Surrey, RH5 6NT
United Kingdom
AU: Szego, K
EM: szego@rmki.kfki.hu
AF: KFKI Research Institute for Particle and Nuclear Physics, Budapest, Hungary, H-1525
Hungary
AU: Bebesi, Z
EM: bzsofi@rmki.kfki.hu
AF: KFKI Research Institute for Particle and Nuclear Physics, Budapest, Hungary, H-1525
Hungary
AU: Thomsen, M F
EM: mthomsen@lanl.gov
AF: Los Alamos National Laboratory, Los Alamos, New Mexico, 87545
United States
AU: Gosling, J T
EM: jgosling@lanl.gov
AF: Los Alamos National Laboratory, Los Alamos, New Mexico, 87545
United States
AU: Steinberg, J
EM: jsteinberg@lanl.gov
AF: Los Alamos National Laboratory, Los Alamos, New Mexico, 87545
United States
AU: McComas, D J
EM: DMcComas@swri.edu
AF: Southwest Research Institute, 6220 Culebra Road, San Antonio, 78228
United States
AU: Kurth, W S
EM: william-kurth@uiowa.edu
AF: Department of Physics and Astronomy, University of Iowa, Iowa City, 52242
United States
AU: Crary, F J
EM: fcrary@swri.edu
AF: Southwest Research Institute, 6220 Culebra Road, San Antonio, 78228
United States
AB:
The Cassini spacecraft entered the Saturn system in June 2004. The first observation of Saturn's bow shock occurred at 09:48
UT on 27 June 2004 at an absolute distance of 49.2 Rs from the planet. At this time Cassini was approaching Saturn towards
dawn, ~30 degrees below the orbital plane with a velocity of ~7.3 kms-1. During this, and six subsequent crossings on the
inbound leg, the Cassini plasma spectrometer (CAPS) measured the flux of 0.5 eV to 28.0 keV electrons as they were slowed and
heated at the shock front and made some measurements of ions in the downstream region. After the successful insertion burn
Cassini encountered the bow shock a further ten times from 82.5 to 87.0 Rs. At this time the orbiter was exiting the Saturn
system with a velocity of ~2.6 kms-1 within ~15 degrees of Saturn's equator. During these crossings CAPS was oriented such
that the instrument was able to measure the fluxes of 1 eV to 50 keV ions in addition to the electron measurements (which are
always available irrespective of spacecraft pointing). The CAPS observations show that the solar wind plasma is strongly
modified at the bow shock with electron density enhancements up to a factor of 4 and electron temperature increasing by as
much as a factor of ~20. The ion bulk flow in the sheath was typically ~250 kms-1 with a thermal speed of ~100 kms-1. In
this presentation we will characterise the plasma transitions observed and compare them with previous studies made by the
same instrument at Jupiter. Supporting data from the Cassini magnetometer and the radio and plasma wave instruments will
also be presented where appropriate.
DE: 6275 Saturn
DE: 2154 Planetary bow shocks
DE: 2164 Solar wind plasma
DE: 2728 Magnetosheath
DE: 2784 Solar wind/magnetosphere interactions
SC: Planetary Sciences [P]
MN: 2004 AGU Fall Meeting