HR: 08:20h
AN: SH11A-02 INVITED [PDF]
TI: Probing Ion Acceleration and Ambient Abundances in Solar Flares with RHESSI
AU: * Smith, D M
EM: dsmith@scipp.ucsc.edu
AF: Physics Department and Santa Cruz Institute for Particle Physics, University of California, Santa Cruz
1156 High Street, Santa Cruz, CA 95064 United States
AU: Shih, A Y
EM: ayshih@ssl.berkeley.edu
AF: Physics Department and Space Sciences Laboratory, University of California, Berkeley, Berkeley, CA
94720 United States
AU: Hurford, G J
EM: ghurford@ssl.berkeley.edu
AF: Space Sciences Laboratory, University of California, Berkeley, Berkeley, CA 94720 United States
AU: Share, G H
EM: gerald.share@nrl.navy.mil
AF: E. O. Hulbert Center for Space Research, Naval Research Laboratory, Washington, DC 20375 United States
AU: Murphy, R J
EM: murphy@ssd5.nrl.navy.mil
AF: E. O. Hulbert Center for Space Research, Naval Research Laboratory, Washington, DC 20375 United States
AU: Schwartz, R A
EM: richard.schwartz@gsfc.nasa.gov
AF: SSAI and NASA's Goddard Space Flight Center, NASA/GSFC, Greenbelt, MD 20771 United States
AU: Lin, R P
EM: rlin@ssl.berkeley.edu
AF: Physics Department and Space Sciences Laboratory, University of California, Berkeley, Berkeley, CA
94720 United States
AB:
Protons and heavier ions accelerated in solar flares to energies on the order of
1 MeV or more per nucleon can excite or even disrupt ambient nuclei in the
solar atmosphere. These processes result in the emission during the flare of gamma-ray lines
of characteristic energies.
The ratios between the fluxes of different gamma-ray lines can reveal both the
composition of the ambient medium and also the ratio between accelerated protons
and alpha particles. Due to the recoil of the excited nuclei, the Doppler profiles
of the de-excitation lines can be used to deduce the angular distribution of
the accelerated ions as they interact. Accelerated nuclei heavier than helium produce very
highly broadened lines from their own de-excitation after encountering ambient
nuclei. These broad lines form a pseudo-continuum which, if carefully separated
from the continuum due to electron bremsstrahlung, could provide a measure of
the fraction of heavy nuclei in the accelerated population.
I will review the results from two gamma-ray line flares observed with
the Reuven Ramaty High Energy Solar Spectroscopic Imager (RHESSI) on
July 23, 2002 and June 17, 2003. These results include 1) the first
subarcminute-resolution image of a gamma-ray line in a flare
(revealing that the ions interact at a considerable distance from the
electron bremsstrahlung site -- Hurford et al. 2003, ApJ Letters, in
press), 2) the first energy-resolved spectra of the nuclear lines,
showing their Doppler profiles (Smith et al. 2003, ibid), 3)
significant and unexpected broadening of the positron annihilation
line (Share et al. 2003, ibid), 4) a constraint on the photospheric
3He concentration from an analysis of the evolution of the line from
neutron capture by hydrogen (Murphy et al. 2003, ibid), and 5) an
apparent change in the ambient composition in the middle of the July
23 flare (Shih et al., in preparation).
DE: 2118 Energetic particles, solar
DE: 2194 Instruments and techniques
DE: 2451 Particle acceleration
SC: SPA - Solar and Heliospheric Physics [SH]
MN: 2003 Fall Meeting