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rf design of a pulse compressor with correction cavity chain for klystron-based compact linear collider

机译:基于速调管的紧凑型线性对撞机的带校正腔链的脉冲压缩机的射频设计

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We present an X-band high-power pulse compression system for a klystron-based compact linear collider. In this system design, one rf power unit comprises two klystrons, a correction cavity chain, and two SLAC Energy Doubler (SLED)-type X-band pulse compressors (SLEDX). An rf pulse passes the correction cavity chain, by which the pulse shape is modified. The rf pulse is then equally split into two ways, each deploying a SLEDX to compress the rf power. Each SLEDX produces a short pulse with a length of 244 ns and a peak power of 217 MW to power four accelerating structures. With the help of phase-to-amplitude modulation, the pulse has a dedicated shape to compensate for the beam loading effect in accelerating structures. The layout of this system and the rf design and parameters of the new pulse compressor are described in this work.
机译:我们提出了一种基于速调管的紧凑型线性对撞机的X波段大功率脉冲压缩系统。在该系统设计中,一个射频功率单元包括两个速调管,一个校正腔链和两个SLAC能量倍增器(SLED)型X波段脉冲压缩器(SLEDX)。 rf脉冲通过校正腔链,从而修改脉冲形状。然后将射频脉冲平均分为两种方式,每种方式都部署一个SLEDX来压缩射频功率。每个SLEDX产生一个长度为244 ns的短脉冲和一个217 MW的峰值功率,以为四个加速结构供电。借助相位到幅度调制,脉冲具有专用形状,可以补偿加速结构中的光束负载效应。这项工作描述了该系统的布局以及新型脉冲压缩机的射频设计和参数。

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