首页> 外文期刊>IEEE Transactions on Plasma Science >Design of a multistage depressed collector system for 1-MW CW gyrotrons. I. Trajectory control of primary and secondary electrons in a two-stage depressed collector
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Design of a multistage depressed collector system for 1-MW CW gyrotrons. I. Trajectory control of primary and secondary electrons in a two-stage depressed collector

机译:用于1兆瓦连续波回旋管的多级低压收集器系统的设计。一,两级凹陷集电极中一次电子和二次电子的轨迹控制

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Part I of this paper presents the design of a two-stage depressed collector for a 110 GHz, 1 MW gyrotron, taking into account the trajectories of electrons backscattered from the electrode surfaces. The collector geometry and the magnetic circuit were adjusted in order to minimize the effect of backscattered electrons. A computer code was employed which is based on a new algorithm designed to give good representation to a variety of energy levels and angles of emergence of backscattered electrons. The collector efficiency estimated on the basis of primary electrons alone was 68%. The estimated collector efficiency which included also the effect of backscattered electrons was 60%. In the latter case the surface of the collectors was assumed to be that of polished copper. The techniques and codes used in the design are reviewed and results of trajectory tracing are presented for primaries and secondaries. Part II of the paper presents the system aspects, including the mechanical and thermal designs and the solid-state power supply design.
机译:本文的第一部分介绍了一种用于110 GHz,1 MW回旋加速器的两级凹陷式集电极的设计,其中考虑了从电极表面反向散射的电子的轨迹。调整了集电极的几何形状和磁路,以最大程度地减小反向散射电子的影响。使用了一种基于新算法的计算机代码,该新算法旨在很好地表示各种能级和反向散射电子的出现角度。仅基于一次电子估计的集电极效率为68%。估计的集电极效率(包括反向散射电子的影响)为60%。在后一种情况下,假设集电器的表面为抛光铜的表面。审查了设计中使用的技术和代码,并给出了初级和次级轨迹跟踪的结果。本文的第二部分介绍了系统方面,包括机械和热设计以及固态电源设计。

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