S. I. Yakovlenko

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To order the complete compilation report, use: ADA421147 The component part is provided here to allow users access to individually authored sections f proceedings, annals, symposia, etc. However, the component should be considered within-he context of the overall compilation report and not as a stand-alone technical report.
A self-consistent nonstationary kinetic model of the copper vapor laser active medium has been constructed. The present-day experimental and theoretical facts concerning the possibility of improving the laser's generation characteristics through adding cesium atoms into its active medium are analyzed. The causes of such an improvement are revealed. New data(More)
A kinetic model of the active medium of a copper-vapor laser with hydrogen admixtures is developed. This model is tested against the available experimental data. A detailed analysis of different viewpoints on the improvement of losing characteristics of a copper-vapor laser by hydrogen admixtures is provided. Hydrogen admixtures are shown to improve the(More)
New understanding of mechanism of the runaway electrons beam generation in gases is presented. It is shown that the Townsend mechanism of the avalanche electron multiplication is valid even for the strong electric fields when the electron ionization friction on gas may be neglected. The non-local criterion for runaway electrons has been proposed. This(More)
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