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RF priming of a long pulse relativistic magnetron.

机译:长脉冲相对论磁控管的射频启动。

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Rapid startup, increased pulsewidth and mode locking of magnetrons have been demonstrated experimentally on a relativistic magnetron by radio frequency (RF) priming. Experiments utilize a -300 kV, 2-8 kA, 300-500 ns electron beam to drive a Titan 6-vane relativistic magnetron (∼100 MW output power). The RF priming source is a 100 kW pulsed magnetron operating at 1.27-1.32 GHz.; Tuning stubs were utilized in the Titan structure to adjust the operating frequency of the relativistic magnetron pi-mode upward by 30%. The tuning was guided by simulation in the MAGIC 3D code and experimental cold tests including a mapping of the azimuthal electric field inside the relativistic magnetron structure. The most successful tuning geometry was that of a standard anode resonant structure, but RF priming experiments were performed on a rising-sun structure as well.; The Time Frequency Analysis (TFA) program was used to directly observe the effects of RF priming on the relativistic magnetron. RF priming was successful in decreasing mode competition by suppressing the generation of the 2pi/3-mode power by 41%. RF priming experiments were also successful in increasing microwave pulsewidth by 12% and decreasing microwave output delay by 22%. These improvements were observed while operating in a priming regime not satisfying Adler's Relation. Overall, the improvements made to the performance of the relativistic magnetron were modest because of the low priming power available (50-250 kW).
机译:在相对论磁控管上,通过射频(RF)起动在实验上证明了磁控管的快速启动,增加的脉冲宽度和锁模功能。实验利用-300 kV,2-8 kA,300-500 ns的电子束来驱动Titan 6叶片相对论磁控管(〜100 MW输出功率)。射频启动源是工作在1.27-1.32 GHz的100 kW脉冲磁控管。泰坦结构中使用了短线,以将相对论磁控管pi模式的工作频率向上调整30%。通过MAGIC 3D代码中的仿真和实验性冷测试(包括相对论磁控管结构内部的方位电场的映射)指导进行调谐。最成功的调谐几何形状是标准阳极谐振结构的几何形状,但RF引爆实验也在朝阳结构上进行。时频分析(TFA)程序用于直接观察射频启动对相对论磁控管的影响。通过将2pi / 3模式功率的产生抑制41%,RF启动成功地减少了模式竞争。射频启动实验也成功地将微波脉冲宽度增加了12%,并将微波输出延迟减少了22%。这些改进是在不满足阿德勒关系的灌注体系中进行的。总体而言,相对论磁控管性能的改进是适度的,因为可用的启动功率较低(50-250 kW)。

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