Iterative solution of the multistream electron transport equation. I - Comparison with laboratory beam injection experiments

Statistics – Computation

Scientific paper

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Beam Injection, Electron Transfer, Mesosphere, Particle Motion, Thermosphere, Transport Theory, Angular Distribution, Computational Grids, Electron Scattering, Energy Transfer, Integral Equations, Iterative Solution, Scattering Cross Sections

Scientific paper

The Neumann iteration method presently used for solving the electron transport equation in which energy, attitude, and pitch angle are independent variables is fast, and can compute numerical point-response-function solutions of the electron transport equation. Because both the inelastic cross sections and angular elastic cross sections of the model are empirically based, the solutions obtained represent a test of compatibility between various sets of cross sections and energy deposition measurements. The use of a numerical quadrature based on analytic phase function forms yields accurate phase function integrals at low computational cost.

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