HR: 0830h
AN: SH41B-0468 [PDF]
TI: Variability of N/O in the Solar Wind
AU: * Wimmer-Schweingruber, R F
EM: wimmer@physik.uni-kiel.de
AF: Institut f\"ur Experimentelle und Angewandte Physik, Christian-Albrechts-Universit\"at zu Kiel,
Leibnizstr.\,11, Kiel, 24118
Germany
AU: Bochsler, P
AF: Physikalisches Institut,, University of Bern,
Sidlerstr.\,5, Bern, 3012
Switzerland
AU: Wurz, P
AF: Physikalisches Institut,, University of Bern,
Sidlerstr.\,5, Bern, 3012
Switzerland
AU: Gloeckler, G
AF: Dept. of Physics, University of Maryland, College Park, MD 20742 United States
AU: Gloeckler, G
AF: University of Michigan, 2455 Hayward St.,
AOSS, Ann Arbor, MI 48109
AU: Geiss, J
AF: International Space Science Institute, Hallerstr.\,6, Bern, 3012
Switzerland
AU: Kallenbach, R
AF: International Space Science Institute, Hallerstr.\,6, Bern, 3012
Switzerland
AU: Zurbuchen, T H
AF: University of Michigan, 2455 Hayward St.,
AOSS, Ann Arbor, MI 48109
AB:
The Solar Wind Ion Mass Spectrometer (SWIMS) on ACE has successfully measured
the elemental abundance of nitrogen in the solar wind,
N/O $\approx 0.121 \pm 0.014$, in excellent agreement with the
photospheric value of
N/O $\approx 0.123$ and with the SEP-dervied coronal value.
The abundance of nitrogen in the heliosphere is an enigma. Laboratory
analysis of lunar soils shows that trapped nitrogen is overabundant in them
by about one order of
magnitude relative to the heavy noble gases, which in turn are efficiently
trapped in the lunar regolith.
In this work we investigate the variability of N/O in the solar wind. Since Ne/O is
known to vary little, variations in N/O would translate directly to variations of
N with respect to noble gases. Small variations in N/O will therefore
provide further evidence for a non-solar origin of most of nitrogen in lunar soils.
Nitrogen is not readily measured in the solar wind because it is not very
abundant and it is neighbored in mass and in mass per charge by the most
abundant heavy ions,
oxygen and carbon. For this reason, previous elemental abundance
determinations of nitrogen in the
solar wind have had
large intrinsic uncertainties. However, with
SWIMS, nitrogen is cleanly separated from its neighbors
and its abundance can be accurately measured.
DE: 2164 Solar wind plasma
DE: 2169 Sources of the solar wind
DE: 6200 PLANETOLOGY: SOLAR SYSTEM OBJECTS (New field)
DE: 6250 Moon (1221)
SC: SPA - Solar and Heliospheric Physics [SH]
MN: 2003 Fall Meeting