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首页> 外文期刊>International Journal of Infrared and Millimeter Waves >A coaxial magnetron injection gun (CMIG) for a 2 MW, 170 GHz coaxial cavity gyrotron
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A coaxial magnetron injection gun (CMIG) for a 2 MW, 170 GHz coaxial cavity gyrotron

机译:同轴磁控管注入枪(CMIG),用于2 MW,170 GHz同轴腔回旋管

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摘要

An electron gun (80 kV / 75 A) for a 170 GHz coaxial cavity gyrotron has been designed, fabricated and tested. Special care has been devoted to the design of the technical part of the electron gun in order to avoid trapping of electrons, which may result in a limitation of the high voltage performance due to built-up of a Penning discharge which may limit the high voltage performance. The performance of the electron gun and electron beam has been found to be well in agreement with the design objective. A stable operation up to I-b = 80 A and U-c = 80 kV has been obtained without any observable beam instabilities. No limitations in high voltage performance due to built-up of a Penning discharge occurred. The influence of the type of electron flow on gyrotron performance has been studied experimentally. The maximum output power has been obtained for an intermediate type of flow.
机译:已经设计,制造和测试了用于170 GHz同轴腔回旋管的电子枪(80 kV / 75 A)。为了避免电子的捕获,已经特别注意电子枪技术部分的设计,这可能会由于Penning放电的积累而导致对高压性能的限制,从而限制了高压性能。已经发现电子枪和电子束的性能与设计目标非常吻合。已获得高达I-b = 80 A和U-c = 80 kV的稳定运行,而没有任何可观察到的光束不稳定性。由于建立了Penning放电,因此对高压性能没有限制。实验研究了电子流类型对回旋管性能的影响。对于中间类型的流,已获得最大输出功率。

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