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Design of the Compact Linear Collider main linac accelerating structure made from two halves

机译:由两半组成的紧凑型线性对撞机主要直线加速器加速结构的设计

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Milling on two longitudinally split halves is one method to manufacture accelerating structures. This method is simple and allows one to avoid electromagnetic fields at bonding joints, making it attractive in manufacturing high-gradient accelerating structures. An X-band structure design with strong wakefield damping based on this manufacturing approach is studied in this work as an alternative design for the Compact Linear Collider (CLIC) main linac accelerating structures. The geometry of the structure is optimized to greatly reduce the surface fields, improve the efficiency, and suppress the wakefield. This structure features the baseline design of the CLIC main linac with additional advantages. This study may serve as a reference for designing other high frequency-band corrugated structures.
机译:在两个纵向剖分的两半上铣削是制造加速结构的一种方法。这种方法很简单,可以避免接合处的电磁场,因此在制造高梯度加速结构方面具有吸引力。在这项工作中,以紧凑型线性对撞机(CLIC)主直线加速器加速结构的替代设计为基础,研究了基于这种制造方法的具有强尾场阻尼的X波段结构设计。优化了结构的几何形状,以大大减少表面场,提高效率并抑制尾流场。该结构具有CLIC主直线加速器的基线设计的其他优点。该研究可为设计其他高频波纹结构提供参考。

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