Production of runaway electrons by negative streamer discharges
- 9 June 2010
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 115 (A6)
- https://doi.org/10.1029/2009ja014774
Abstract
In this paper we estimate the probability that cold electrons can be accelerated by an ambient electric field into the runaway regime, and discuss the implications for negative streamer formation. The study is motivated by the discovery of ms duration bursts of γ‐rays from the atmosphere above thunderstorms, the so‐called Terrestrial Gamma‐Ray Flashes. The radiation is thought to be bremsstrahlung from energetic (MeV) electrons accelerated in a thunderstorm discharge. The observation goes against conventional wisdom that discharges in air are carried by electrons with energies below a few tens of eV. Instead the relativistic runaway electron discharge has been proposed which requires a lower threshold electric field; however, seed electrons must be born with energies in the runaway regime. In this work we study the fundamental problem of electron acceleration in a conventional discharge and the conditions on the electric field for the acceleration of electrons into the runaway regime. We use particle codes to describe the process of stochastic acceleration and introduce a novel technique that improves the statistics of the relatively few electrons that reach high energies. The calculation of probabilities for electrons to reach energies in the runaway regime shows that even with modest fields, electrons can be energized in negative streamer tips into the runaway regime, creating a beamed distribution in front of the streamer that affects its propagation. The results reported here suggest that theories of negative streamers and spark propagation should be reexamined with an improved characterization of the kinetic effects of electrons.Keywords
This publication has 52 references indexed in Scilit:
- Gradual increase of energetic radiation associated with thunderstorm activity at the top of Mt. FujiGeophysical Research Letters, 2009
- Time evolution of terrestrial gamma ray flashesGeophysical Research Letters, 2008
- A comparison between Monte Carlo simulations of runaway breakdown and terrestrial gamma‐ray flash observationsGeophysical Research Letters, 2005
- X‐ray bursts produced by laboratory sparks in airGeophysical Research Letters, 2005
- Implications of x‐ray emission from lightningGeophysical Research Letters, 2004
- Energetic radiation associated with lightning stepped‐leadersGeophysical Research Letters, 2001
- Gamma‐ray emissions observed in a thunderstorm anvilGeophysical Research Letters, 2000
- X‐ray pulses observed above a mesoscale convective systemGeophysical Research Letters, 1996
- Further observations of X‐rays inside thunderstormsGeophysical Research Letters, 1985
- X‐ray enhancements detected during thunderstorm and lightning activitiesGeophysical Research Letters, 1981