Optimized Vertical Collector Sweeping for High Power CW Gyrotrons Using Advanced Current Waveforms

S. Illy, K. Avramidis, L. Jackowski, Walid Kdous, J. Jelonnek
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引用次数: 2

Abstract

For high power CW gyrotrons, it is mandatory to reduce the extreme power densities on the collector wall caused by the spent electron beam. A typical measure is the spreading of the electron trajectories using vertical sweeping driven by an oscillating magnetic field. Using a sinusoidal current to feed the sweeping coils has the drawback that the electron beam stays relatively long in the areas of the lower and upper turning points, which causes relatively high peaks of the average power density at these positions. A conceptual study is presented, which tries to mitigate this problem by using advanced current waveforms to speed up the turning process of the electron beam close to the critical areas and to give information to assist in the procurement of a possible sweeping power supply.
利用先进电流波形优化高功率连续波回旋管垂直集电极扫描
对于大功率连续波回旋管,必须降低废电子束在集电极壁上造成的极端功率密度。一种典型的测量方法是利用振荡磁场驱动的垂直扫频来扩展电子轨迹。使用正弦电流馈送扫描线圈的缺点是,电子束在较低和较高的转折点区域停留的时间相对较长,这导致这些位置的平均功率密度峰值相对较高。提出了一项概念性研究,试图通过使用先进的电流波形来加速靠近关键区域的电子束的转弯过程,并为协助采购可能的横扫电源提供信息,从而缓解这一问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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