HR: 0830h
AN: SH21B-0132 [PDF]
TI: STOCHASTIC WAVE GROWTH in DIVERSE SPACE PLASMAS: THEORY, SIMULATION, DATA
AU: Robinson, P A
EM: robinson@physics.usyd.edu.au
AF: School of Physics, University of Sydney, Sydney, NSW 2006
Australia
AU: Li, B
EM: boli@physics.usyd.edu.au
AF: School of Physics, University of Sydney, Sydney, NSW 2006
Australia
AU: * Cairns, I H
EM: cairns@physics.usyd.edu.au
AF: School of Physics, University of Sydney, Sydney, NSW 2006
Australia
AB:
Burstiness of observed wave emissions in space plasmas has been
addressed via stochastic theories of wave growth. These include
elementary burst theories (EBT) of solar microwave spike burst, for example,
and stochastic growth theory (SGT) of type II and III radio bursts and
other planetary and heliospheric sources. These
theories are unified here, the EBT and SGT regimes are elucidated, and
a new SGT regime is uncovered. It is predicted that all the regimes
have lognormal wave-intensity statistics, but that EBT regimes
will have smaller numbers of random fluctuations than SGT. This is
consistent with published data. Simplified equations for
the dynamics of generalized SGT, covering both regimes,
are proposed and their results are compared with quasilinear and
PIC simulations, and with theory. This is the first
direct evidence of SGT from simulations.
DE: 7534 Radio emissions
DE: 7843 Numerical simulation studies
DE: 7867 Wave/particle interactions
DE: 7871 Waves and instabilities
SC: SPA - Solar and Heliospheric Physics [SH]
MN: 2003 Fall Meeting