HR: 16:55h
AN: SM12C-04 [PDF]
TI: Imaging Icy Moon Atmospheres and Energetic Ion Impact Patterns From JIMO Using Energetic Neutral
Atoms
AU: * Mauk, B H
EM: Barry.Mauk@jhuapl.edu
AF: The Johns Hopkins University
Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, UD 20723 United States
AU: Roelof, E C
AF: The Johns Hopkins University
Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, UD 20723 United States
AU: Saur, J S
AF: The Johns Hopkins University
Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, UD 20723 United States
AU: Paranicas, C P
AF: The Johns Hopkins University
Applied Physics Laboratory, 11100 Johns Hopkins Road, Laurel, UD 20723 United States
AB:
With column densities in excess of 1.E14 /cm2 (Hall et al., 1998; Carlson 1999), the atmospheres of Europa, Ganymede and
Callisto provide substantial targets for the conversion of energetic ions from Jupiter's magnetosphere into energetic neutral
atoms (ENA). Here we document the value of using the technique of ENA imaging to determine the dynamics and structure of
the icy moon bound and extended atmospheres, and to further elucidate the electromagnetic environments of the moons that
control the pattern of ion impacts onto the icy moon surfaces. ENA imaging has become a standard technique for
characterizing the structure of planetary magnetospheres, and its value in determining the presence of neutral gas from icy
moons has recently been demonstrated (Mauk et al. 2003). The Cassini mission will use such imaging to diagnose the upper
atmosphere and the electromagnetic environment of Titan (Amsif et al., 1997). In the work presented here, Galileo inputs are
used to simulate the ENA emission patterns from Jupiter's icy moons, as they would appear to the Jupiter Icy Moon Orbiter
(JIMO) platform. We show that such imaging will provide important spatial and temporal information on the processes that
control the structure of icy moon atmospheres. In combination with in situ charged particle measurements, it will also
provide critical information needed to separate temporal from spatial variations as we try to understand the dynamic
electromagnetic environments of the icy moons. Understanding these changing electromagnetic environments is vital to using
electromagnetic fields to probe the interiors of these moons.
Amsif, A., J. Dandouras, E. C. Roelof, J. Geophys. Res., 102, 22181, 1997
Carlson, R. W., Science, 283, 820, 1999.
Hall, D. T., P. D. Feldman, M. A. McGrath, and D. F. Strobel, ApJ, 499, 1998.
Mauk, B. H., D. G. Mitchell, S. M. Krimigis, E. C. Roelof, and C. P. Paranicas, Nature, 421, 920, 2003.
DE: 2732 Magnetosphere interactions with satellites and rings
DE: 2756 Planetary magnetospheres (5443, 5737, 6030)
DE: 2794 Instruments and techniques
DE: 6218 Jovian satellites
SC: SPA - Magnetospheric Physics [SM]
MN: 2003 Fall Meeting