HR: 0830h
AN: SH11D-1142 [PDF]
TI: Updated Measurements of the Isotopic Composition of Solar
Energetic Particles
AU: * Leske, R A
EM: ral@srl.caltech.edu
AF: California Institute of Technology, Mail Code 220-47, Pasadena, CA 91125 United States
AU: Wiedenbeck, M E
AF: Jet Propulsion Laboratory, MS 169-327, Pasadena, CA 91109 United States
AU: Cohen, C M
AF: California Institute of Technology, Mail Code 220-47, Pasadena, CA 91125 United States
AU: Cummings, A C
AF: California Institute of Technology, Mail Code 220-47, Pasadena, CA 91125 United States
AU: Mewaldt, R A
AF: California Institute of Technology, Mail Code 220-47, Pasadena, CA 91125 United States
AU: Stone, E C
AF: California Institute of Technology, Mail Code 220-47, Pasadena, CA 91125 United States
AU: von Rosenvinge, T T
AF: NASA/Goddard Space Flight Center, Code 661, Greenbelt, MD 20771 United States
AB:
Recent results from the Advanced Composition Explorer (ACE)
have shown that solar energetic particle (SEP) isotopic
composition in large gradual events can vary considerably
(by factors of $>3$) from event to event, apparently due
to mass fractionation processes during particle acceleration
and/or transport. To first order, this mass fractionation
seems to scale as a power law in the ionic charge to mass
ratio, Q/M, similar to what is observed for SEP elemental
fractionation. However, differences from power-law scaling
are required for most events to completely account for the
observed abundances. Characterizing the actual
fractionation patterns is necessary in order to use these
data to better constrain the coronal source abundances
and to understand the fractionation processes.
In the $>$6 years since the launch of ACE, we have obtained
SEP isotope measurements of abundant elements from C to Ni
in $>$40 large SEP events. We find
that the isotopic and elemental abundance enhancements are
strongly correlated. By assuming isothermal
conditions and using calculated equilibrium charge states,
we examine deviations in the fractionation patterns from
simple power-law scaling.
This work was supported by NASA at Caltech (under grants
NAG5-6912 and NAG5-12929), JPL, and GSFC.
DE: 2118 Energetic particles, solar
DE: 7514 Energetic particles (2114)
SC: SPA - Solar and Heliospheric Physics [SH]
MN: 2003 Fall Meeting