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Microwave Breakdown Technique for Measuring Ionization Rate of High Temperature Gases in a Shock Tube

机译:测量冲击管中高温气体电离率的微波击穿技术

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In the design of antennas for use on hypersonic re-entry vehicles, the effect of high-temperature ionized gas surrounding the vehicle must be considered. Interaction of the fields of the antenna with adjacent ionized medium requires examination of parameters that are not involved in the usual RF plasma interaction. In the nonlinear case where the RF field is strong enough to produce additional ionization in the gas, break-down occurs and proceeds catastrophically until the electron density is high enough that the plasma limits the strength of the field penetrating the plasma. The power-handling capability of the antenna depends upon the RF fields created and the electron production and loss rates in the flowing medium.
机译:在设计用于超音速再入飞行器的天线时,必须考虑飞行器周围的高温电离气体的影响。天线场与相邻电离介质的相互作用需要检查通常的RF等离子体相互作用中不涉及的参数。在射频场强到足以在气体中产生额外电离的非线性情况下,击穿会发生并灾难性地进行,直到电子密度足够高以致等离子体限制穿透等离子体的场强。天线的功率处理能力取决于所产生的RF场以及流动介质中的电子产生率和损耗率。

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