Streamer Propagation as a Pattern Formation Problem: Planar Fronts
arXiv:patt-sol/9702005 · doi:10.1103/PhysRevLett.77.4178
Abstract
Streamers often constitute the first stage of dielectric breakdown in strong electric fields: a nonlinear ionization wave transforms a non-ionized medium into a weakly ionized nonequilibrium plasma. New understanding of this old phenomenon can be gained through modern concepts of (interfacial) pattern formation. As a first step towards an effective interface description, we determine the front width, solve the selection problem for planar fronts and calculate their properties. Our results are in good agreement with many features of recent three-dimensional numerical simulations.
4 pages, revtex, 3 ps files
Cited by in corpus (33)
- Front propagation into unstable states
- The physics of streamer discharge phenomena
- Front propagation into unstable states: Universal algebraic convergence towards uniformly translating pulled fronts
- The multiscale nature of streamers
- Propagation and Structure of Planar Streamer Fronts
- Branching of negative streamers in free flight
- Spatially hybrid computations for streamer discharges: II. Fully 3D simulations
- High order fluid model for streamer discharges: I. Derivation of model and transport data
- Universal algebraic relaxation of fronts propagating into an unstable state
- Tunneling-assisted impact ionization fronts in semiconductors
- Saffman-Taylor streamers: mutual finger interaction in an electric breakdown
- On the mechanism of branching in negative ionization fronts
- A Dynamic Model of Streamer Coupling for High Pressure Discharges
- Stability of negative ionization fronts: regularization by electric screening?
- Streamer branching rationalized by conformal mapping techniques
- A computational study of steady and stagnating positive streamers in N2-O2 mixtures
- A computational study of accelerating, steady and fading negative streamers in ambient air
- Guiding-fields for phase-separation: Controlling Liesegang patterns
- Construction and test of a moving boundary model for negative streamer discharges
- Convective stabilization of a Laplacian moving boundary problem with kinetic undercooling
- Ionization fronts in negative corona discharges
- A moving boundary model motivated by electric breakdown: II. Initial value problem
- Asymptotically self-similar propagation of the spherical ionization waves
- The onset of tree-like patterns in negative streamers
- Electric discharge contour dynamics model: the effects of curvature and finite conductivity
- Spontaneous Branching of Anode-Directed Streamers between Planar Electrodes
- Contour dynamics model for electric discharges
- Spatiotemporal dynamics of nanosecond pulsed discharge in the form of a fast ionization wave: self-consistent two-dimensional modeling and comparison with experiments under negative and positive polarity
- Moving boundary approximation for curved streamer ionization fronts: Solvability analysis
- On negative streamers: a deterministic approach
- Moving boundary approximation for curved streamer ionization fronts: Numerical tests
- Interaction of streamers and stationary corrugated ionization waves in semiconductors
- Photoionization effects in streamer discharges