磁源等离子体流是微波功率工程中有效的电磁辐射源

A.P. Smakhtin, V. Rybakov
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引用次数: 0

摘要

本文讨论了磁源等离子体流作为微波功率工程中有效的电磁辐射源。等离子体电磁发生器(PEMG)允许通过在横向磁场中减速的等离子体实现等离子体流能量向单色微波辐射的直接转换。等离子体流以接近恒定的速度在横向磁场中漂移。等离子体流中的离子在电子前面,形成等离子体流的纵向极化。纵向电场提供了离子动能到旋转电子能量的转换。等离子体流的动能转化为微波辐射。本文还提出了PEMGs运行参数可能水平的估计和横向电磁波不稳定类型的分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magneto-active plasma stream as effective source of electromagnetic radiation in microwave power engineering
The paper deals with magneto-active plasma stream as effective source of electromagnetic radiation in microwave power engineering. PEMG (plasma electromagnetic generator) allows to achieve the direct conversion of plasma stream energy to monochromatic microwave radiation by the decelerating plasma in a transverse magnetic field. The plasma stream moves through the transverse magnetic field with near-constant velocity as the drift flow. Ions of the plasma stream are ahead of the electrons and form longitudinal polarization of the plasma stream. Longitudinal electric field provides the conversion of ion kinetic energy to energy of rotating electron. The kinetic energy of the plasma stream transforms to the microwave radiation. The paper also presents the estimation of the possible level of PEMGs operation parameters and analysis of instability type of transverse electromagnetic waves.
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