HR: 1340h
AN: SH23A-0324 [Abstracts]
TI: Pre-existing turbulence and large gradual SEP events
AU: * Li, G
EM: gang.li@ucr.edu
AF: IGPP, Unversity of California at Riverside, University of California, Riverside, CA 92521
United States
AU: Zank, G P
EM: zank@ucr.edu
AF: IGPP, Unversity of California at Riverside, University of California, Riverside, CA 92521
United States
AB:
Gradual Solar Energetic Particle events (SEPs) are now believed to be associated with shocks
driven by Coronal Mass Ejections (CMEs). As CMEs propagate out from the Sun, particles are
accelerated at the shock front, reaching energies to 10's of MeV and occasionally ~ GeV's.
However, the efficiency and ability of accelerating particles to very high energies vary
drastically from event to event. Individual events, whose solar progenitors are similar, can differ much at
high energies. Recently, there are observational indications that large gradual events usually
happen when two or more CMEs occur closely. In this work, we study the consequence of having
two CMEs occur closely in time. We find that the first CME can effectively enhance the turbulence
upstream the second shock from its interplanetary level. Such an increase will significantly
decrease the acceleration time scale at the second shock and thus boost particles to much higher
energies. We show that under certain situation, an increase of 30 for the maximum particle energy
can be achieved. We discuss possible implications of our calculation to observations of
large gradual SEP events such as the 2005 January 20 event.
DE: 7513 Coronal mass ejections (2101)
DE: 7514 Energetic particles (2114)
DE: 7863 Turbulence (4490)
SC: SPA-Solar and Heliospheric Physics [SH]
MN: Fall Meeting 2005