Estimating the electron energy distribution during ionospheric modification from spectrographic airglow measurements

Physics – Plasma Physics

Scientific paper

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[7803] Space Plasma Physics / Active Perturbation Experiments, [7845] Space Plasma Physics / Particle Acceleration, [7894] Space Plasma Physics / Instruments And Techniques

Scientific paper

The electron energy distribution during an F region ionospheric modification experiment is inferred from spectrographic airglow emission data. Emission lines at 630.0, 557.7, and 844.6 nm are considered along with the absence of detectable emissions at 427.8 nm. Estimating the electron energy distribution function from the airglow data is a problem in classical linear inverse theory. We describe an augmented version of the method of Backus and Gilbert which we use to invert the data. The method optimizes the model resolution, the precision of the mapping between the actual electron energy distribution and its estimate. Here, the method has also been augmented so as to limit the model prediction error. Our methodology predicts a heater-induced electron energy spectrum with a peak near 5 eV that decreases by almost three orders of magnitude between 5--30 eV.

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