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Theory of Nanosecond High-Power Microwave Breakdown on the Atmosphere Side of the Dielectric Window

机译:介电窗大气侧纳秒大功率微波击穿理论

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This paper deals with the theory of plasma development in the nanosecond high-power microwave breakdown at the dielectric/air interface. Utilizing the Poisson and Boltzmann equations, the basic physics are explored and investigated. Corresponding to the incident electric field, electrons moving back and forth bring about the negative charge accumulation at the interface. This process generates an extra electric field, strengthening the total amplitude. Simultaneously, deviations of electrons and ions lead to a sheath region providing a space charge field. Secondary electrons are strongly accelerated in the sheath region, eventually leading to an ionization avalanche in a very short time. Both the densities and energies of particles reach the maximums near the sheath region, and that is why the illumination is most significant near the interface. The theory is in good accordance with an experiment conducted under the same conditions.
机译:本文讨论了介电/空气界面纳秒级高功率微波击穿中的等离子体发展理论。利用泊松方程和玻尔兹曼方程,对基本物理学进行了探索和研究。对应于入射电场,来回移动的电子在界面处引起负电荷积累。此过程会产生额外的电场,从而增强总振幅。同时,电子和离子的偏离导致提供空间电荷场的鞘区域。二次电子在鞘层区域被强烈加速,最终在很短的时间内导致电离雪崩。粒子的密度和能量都在鞘区域附近达到最大值,这就是为什么在界面附近照度最高的原因。该理论完全符合在相同条件下进行的实验。

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