HR: 0830h
AN: SH21B-0127 [PDF]
TI: Understanding Electron Heat Flux Dropouts
AU: * Pagel, A C
EM: pagel@bu.edu
AF: Center for Space Physics, Boston University, 725 Commonwealth Avenue, Boston, MA 02215 United States
AU: Crooker, N
EM: crooker@bu.edu
AF: Center for Space Physics, Boston University, 725 Commonwealth Avenue, Boston, MA 02215 United States
AU: Larson, D E
EM: davin@ssl.berkeley.edu
AF: Space Sciences Laboratory, University of California, Berkeley, CA 94720 United States
AB:
Electron heat flux dropouts occur relatively frequently in the solar wind. While they are a necessary signature of flux that
is disconnected from the Sun, and knowledge of just how much flux is disconnected is vital for discriminating between models
of how the Sun reverses its magnetic field, it is now becoming increasingly clear that most dropouts are caused by some
other mechanism. We report on progress in understanding that mechanism. Two factors contribute to electron heat flux in the
solar wind: total flux integrated over pitch angle, and pitch angle isotropy. The latter correlates well with plasma beta,
but the former does not, implying that heat flux and isotropy are to some degree independent and that pitch angle scattering
in high-beta plasma may contribute to isotropy. However, drops in total integrated flux do seem to correlate with the pitch
angle isotropy but at scale sizes larger than those of beta variations.. We use Wind data to perform correlations between
total flux, isotropy and beta to determine at which scales they are best correlated. If total flux and beta are independent,
we would expect their respective correlations with isotropy to occur at different scales. The scale at which each
correlation maximises provides valuable information on the processes involved in heat flux dropouts and on the
interdependence between total flux, isotropy and plasma beta.
DE: 2134 Interplanetary magnetic fields
DE: 2164 Solar wind plasma
DE: 7867 Wave/particle interactions
SC: SPA - Solar and Heliospheric Physics [SH]
MN: 2003 Fall Meeting