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Focusing of the Sheet Electron Beam With Two-Plane Periodic Cusped Magnetic System for Terahertz TWTs

机译:用双翼周期性磁系统聚焦片电子束,用于太赫兹TWT

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The focusing and transmission of a sheet electron beam with periodic cusped magnetic (PCM) fields were studied for the terahertz traveling-wave tubes (TWT). Due to the limitation on the width of the sheet beam from the slow wave structure (SWS), the resulting transmission current density is inevitably high and the width of the sheet beam is highly disproportionate to the magnet system. This defines a situation different from before, which challenges the validity of the traditional PCM scheme. Thus, the focusing of a sheet beam in the above scenario was theoretically analyzed to evaluate the focusing conditions. A practical magnetic field system was then designed based on the offset-pole-piece PCM scheme with the shortened pole pieces, which can meet the focusing requirements, especially on the side focusing. The theoretical analysis and the modified PCM scheme lead to a significant improvement in the focusing/transmission of the sheet beam. The 3-D particle simulation showed that a stable long-distance transmission over 100 mm can be achieved with the two-plane PCM focusing where an elliptical-cross section sheet beam is assumed with dimensions of 0.6 mm x 0.11 mm, voltage of 24.5 kV, and current of 0.18 A.
机译:研究了带有周期性CUSPY磁性(PCM)场的片材电子束的聚焦和传输,用于太赫兹行波管(TWT)。由于从慢波结构(SWS)上的纸张束的宽度的限制,所得到的透射电流密度不可避免地高,并且纸梁的宽度与磁体系统高度不成比例。这定义了与之前不同的情况,这挑战了传统PCM方案的有效性。因此,理论上地分析了纸梁中的聚焦以评估聚焦条件。然后基于具有缩短杆件的偏移极件PCM方案设计了一种实用的磁场系统,其可以满足聚焦要求,特别是在侧面聚焦上。理论分析和改进的PCM方案导致纸梁的聚焦/传输的显着改进。 3-D粒子仿真显示,通过双平面PCM聚焦可以实现超过100mm的稳定的长距离传输,其中椭圆形横截面夹梁尺寸为0.6mm×0.11mm,电压为24.5 kV和0.18 A的电流。

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