HR: 1340h
AN: P43A-0943 [Abstracts]
TI: Inner Magnetospheric Nitrogen Source Detected at Saturn
AU: * Smith, H T
EM: hts4f@virginia.edu
AF: University of Virginia, Engineering Physics, Thornton Hall, Charlottesville, VA 22904
United States
AU: Shappirio, M D
EM: Mark.D.Shappirio@nasa.gov
AF: NASA, Goddard Space Flight Center, Greebelt, MD 20771
United States
AU: Sittler, E C
EM: Edward.C.Sittler@nasa.gov
AF: NASA, Goddard Space Flight Center, Greebelt, MD 20771
United States
AU: Reisenfeld, D
EM: dan.reisenfeld@umontana.edu
AF: University of Montana, Department of Physics and Astronomy
32 Campus Drive, Missoula, MT 59812
United States
AU: Johnson, R E
EM: rej@virginia.edu
AF: University of Virginia, Engineering Physics, Thornton Hall, Charlottesville, VA 22904
United States
AU: Baragiola, R A
EM: rb9a@virginia.edu
AF: University of Virginia, Engineering Physics, Thornton Hall, Charlottesville, VA 22904
United States
AU: Crary, F J
EM: fcrary@swri.edu
AF: Southwest Reseach Institute, Division of Space Science and Engineering
6220 Culebra Road, San Antonio, TX 78228
United States
AU: McComas, D J
EM: dmccomas@swri.edu
AF: Southwest Reseach Institute, Division of Space Science and Engineering
6220 Culebra Road, San Antonio, TX 78228
United States
AU: Eviatar, A
EM: arkee1@daphne.tau.ac.il
AF: Tel-Aviv University, 30 Shaldag Street, Hofit, 40295
Israel
AU: Young, D T
EM: dyoung@swri.edu
AF: Southwest Reseach Institute, Division of Space Science and Engineering
6220 Culebra Road, San Antonio, TX 78228
United States
AB:
The Cassini Plasma Spectrometer (CAPS) detected low energy N+ in Saturn's inner magnetosphere (3.5 < L < 9.5), providing
the first evidence for the presence of neutral nitrogen that is locally ionized in this region. We have detected nitrogen
ions during 10 orbits when Cassini passed through the inner magnetosphere. Voyager's detection of unresolved mass/charge
14-16 amu/e ions in this region caused much debate over the possible presence of N+ in Saturn's magnetosphere, however CAPS
can distinguish between N+ and water group ions. Two principal nitrogen sources have been suggested: material from Titan's
atmosphere and nitrogen compounds trapped in the icy satellite and ring particle surfaces (e.g., Sittler et al 2004a, b;
Smith et al. 2004). However, with CAPS we have not been able to detect N+ further than |sim9.5 Rs from Saturn while Titan
is over 20 Rs away. Additionally, the N+ average energies are low and indicative of local pick-up ion sources. This indicates
a nitrogen source connected directly with the icy satellites or from grains from the icy satellites. This may be primordial
nitrogen (e.g. NH3 in ice; Stevenson 1982; Squyers et al. 1983) or nitrogen that has been implanted in the surface (Delitsky
and Lane 2002). Here we present CAPS N+ observations and show that the immediate nitrogen source and describe the connection
is likely to be the icy satellites and/ or E-ring (Young et al. 2005; Smith et al. 2005a).
DE: 2730 Magnetosphere: inner
DE: 2732 Magnetosphere interactions with satellites and rings
DE: 2756 Planetary magnetospheres (5443, 5737, 6033)
DE: 6275 Saturn
DE: 6280 Saturnian satellites
SC: Planetary Sciences [P]
MN: Fall Meeting 2005