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Radio frequency quadrupole cavity structure for particle accelerators — Simulation and measurements

机译:粒子加速器的射频四极腔结构—仿真和测量

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EM simulation of long RFQ with quadruple ridge (vane) waveguide structure with narrow vane gaps and vane end cutbacks is a complex and challenging task. Advances in 3-D EM simulation tools in recent years can lead to accurate analysis of such structures. Here, we present the simulation of long RFQs (over 2λ), validate our results with measurements, compare simulated results of eigenmode frequencies and field distribution to measured values, and finally extend our analysis to an alternative and very promising design noted as double dipole structure. Excellent agreement between measurement and simulation has been attained and design comparison between the long double dipole and the traditional RFQs has been developed.
机译:具有四边形脊形(导叶)波导结构,窄的导叶间隙和导叶末端切角的长RFQ的EM仿真是一项复杂而艰巨的任务。近年来,3-D EM仿真工具的发展可以导致对此类结构的准确分析。在这里,我们介绍了较长的RFQ(超过2λ)的仿真,通过测量验证了我们的结果,将本征模频率和场分布的仿真结果与测量值进行了比较,最后将我们的分析扩展到了另一种很有前途的设计,称为双偶极结构。测量与仿真之间已达成了极好的协议,并且长双偶极子与传统RFQ的设计比较已经得到发展。

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