Abstract
Experimental and theoretical work on the transverse dimensions of meteoric plasma trains have not converged to provide generally accepted values: especially uncertain is the dependence of the train radii on meteor speeds. The roles of the meteoroid structure, fragmentation and plasma processes such as ion-electron instabilities need establishing. Knowledge of the quantitative spatial distribution of plasma in meteor trains is essential for a correct interpretation of fluxes and orbital characteristics. A current project is described which employs the AMOR 26 MHz radar facility in conjunction with a frequency managed radar operating at longer wavelengths designed to measure the ionization train radii, heights, atmospheric speeds and orbits of individual meteors. © Springer Science+Business Media, Inc. 2005.
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Baggaley, W. J., Plank, G. E., Tomlinson, L., & Grant, J. (2004). Radar campaign to determine the dependence of initial radii of meteor plasma trains on trajectory and orbit. Earth, Moon and Planets, 95(1–4), 663–669. https://doi.org/10.1007/s11038-005-1642-y
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