HR: 1340h
AN: P43A-0958 [Abstracts]
TI: Macrosignatures of the icy moons in the inner magnetosphere of Saturn
AU: * Jones, G H
EM: jones@mps.mpg.de
AF: Max-Planck-Institut fuer Sonnensystemforschung, Max-Planck-Str. 2, Katlenburg-Lindau, 37191
Germany
AU: Roussos, E
P43A-0958
AF: Max-Planck-Institut fuer Sonnensystemforschung, Max-Planck-Str. 2, Katlenburg-Lindau, 37191
Germany
AU: Krupp, N
P43A-0958
AF: Max-Planck-Institut fuer Sonnensystemforschung, Max-Planck-Str. 2, Katlenburg-Lindau, 37191
Germany
AU: Woch, J
P43A-0958
AF: Max-Planck-Institut fuer Sonnensystemforschung, Max-Planck-Str. 2, Katlenburg-Lindau, 37191
Germany
AU: Lagg, A
P43A-0958
AF: Max-Planck-Institut fuer Sonnensystemforschung, Max-Planck-Str. 2, Katlenburg-Lindau, 37191
Germany
AU: Paranicas, C
P43A-0958
AF: Applied Physics Laboratory,
Johns Hopkins University, 11100 Johns Hopkins Road, Laurel, MD 20723
United States
AU: Krimigis, S M
P43A-0958
AF: Applied Physics Laboratory,
Johns Hopkins University, 11100 Johns Hopkins Road, Laurel, MD 20723
United States
AU: Mitchell, D G
P43A-0958
AF: Applied Physics Laboratory,
Johns Hopkins University, 11100 Johns Hopkins Road, Laurel, MD 20723
United States
AU: Mauk, B H
P43A-0958
AF: Applied Physics Laboratory,
Johns Hopkins University, 11100 Johns Hopkins Road, Laurel, MD 20723
United States
AU: Ip, W -
P43A-0958
AF: Institutes of Astronomy and Space Science, National Central University, Chung-li, 2054
Taiwan
AU: Dougherty, M K
P43A-0958
AF: Imperial College London, Space and Atmospheric Physics Group,
The Blackett Laboratory,
Prince Consort Road, London, SW7 2BW
United Kingdom
AB:
The energetic particle population of the inner magnetosphere of Saturn is significantly affected by the presence of the
planet's icy moons. Charged particles that strike the surfaces of these moons are removed from the
magnetosphere, significantly reducing the fluxes of particles observed on crossing these moons' L-shells. The signatures have
previously been separated into two classes: Microsignatures are temporary signatures in longitude and time observed in the
charged-particle wakes of satellites. Macrosignatures are longitude- and time-averaged effects of absorbers on the radial
distribution of particles. Here, we present an overview of the decreases in energetic particle fluxes observed at these
moons' L-shells, as observed by the LEMMS portion of the MIMI instrument aboard Cassini. We concentrate on macrosignatures,
particularly those at the L-shell of Enceladus, where a deep, persistent decrease in energetic protons is observed. We
discuss these features' formation, and the possible contribution of E-ring material to the observed flux decreases. It has
recently been suggested that charged particle bombardment
leads to a conversion of water ice from a crystalline to an amorphous state.
Here we discuss the particle evidence for persistent weathering of
Enceladus's surface and the extent to which each charged species is likely involved in this
process.
DE: 2756 Planetary magnetospheres (5443, 5737, 6033)
DE: 5465 Rings and dust
DE: 5737 Magnetospheres (2756)
DE: 6280 Saturnian satellites
SC: Planetary Sciences [P]
MN: Fall Meeting 2005