HR: 1330h
AN: AE42A-0789 [PDF]
TI: Gamma Ray Flashes due to Plasma Effects in the Stratosphere: Role of Whister Waves
AU: * Milikh, G M
EM: milikh@astro.umd.edu
AF: Department of Astronomy, University of Maryland, College Park, MD 20742 United States
AU: Guzdar, P N
EM: guzdar@glue.umd.edu
AF: Institute for Research in Electronics and Applied Physics, University of Maryland, College Park, MD
20742 United States
AU: Sharma, A S
EM: ssh@astro.umd.edu
AF: Department of Astronomy, University of Maryland, College Park, MD 20742 United States
AB:
The gamma ray flashes observed by satellites are correlated with thunderstorms
and can be due to the large electric fields associated with the latter. The
proposed mechanism involves a number of physical processes. It starts with
the creation of a beam of runaway electrons by the static electric field in
the upper part of a thunder cloud. As the beam propagates upward it interacts
with whistler waves generated during cloud-to-ground lightning discharges. This is followed by self-focusing of the
whistler wave, producing ducts which guide the relativistic electron beam to higher altitudes. Such beams could reach
altitudes in excess of 30 km so that the gamma rays generated by bremsstrahlung emission can escape the atmosphere. In this
model for gamma ray generation the
whistler waves play an essentila role. The whistler waves become unstable when the number density of the relativistic
electron beam is high enough to overcome the damping by the population of cold electrons. The threshold conditions are
studied for different ranges of the relevant atmospheric parameters. For whistler waves with large amplitudes due to the
instability, the conditions for self-focusing and channel formation, and consequently the beam propagation are investigated.
DE: 0342 Middle atmosphere--energy deposition
DE: 0689 Wave propagation (4275)
DE: 2483 Wave/particle interactions
DE: 6984 Waves in plasma
DE: 7871 Waves and instabilities
SC: Atmospheric and Space Electricity [AE]
MN: 2003 Fall Meeting