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Feasibility of Folded and Double Dipole Radio Frequency Quadrupole (RFQ) Cavities for Particle Accelerators

机译:折叠加速器和双偶极子射频四极杆(RFQ)腔用于粒子加速器的可行性

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摘要

The quadrupole and dipole modes frequencies can be very close in a long four-vane RFQ as structure length increases. This requires extra mode stabilizer design to improve field stability, which may add to system complexity and cost. Therefore, we investigate other four-vane RFQ designs which can have potential advantages and different mode spectrum. These designs are realized by modifying the RFQ cut-back scheme to be a folded-dipole (FD) or a double-dipole (DD) RFQs. In this paper, mode spectrums of these structures are further investigated as function of structure length and dipole mode properties are discussed in detail. Comparison of other properties of the three cut-back methods-FD, DD, and the conventional four cut-backs (4C) - are presented as well. Full 3-D simulations have been carried out for mode analysis of these RFQs with some experimental validation.
机译:在较长的四叶片RFQ中,随着结构长度的增加,四极模式和偶极模式的频率可能非常接近。这就需要额外的模式稳定器设计来提高现场稳定性,这可能会增加系统的复杂性和成本。因此,我们研究了其他具有潜在优势和不同模式频谱的四叶片RFQ设计。通过将RFQ缩减方案修改为折叠偶极(FD)或双偶极(DD)RFQ来实现这些设计。在本文中,根据结构长度的函数进一步研究了这些结构的模式光谱,并详细讨论了偶极子模式特性。还介绍了三种缩减方法(FD,DD和常规的四种缩减(4C))的其他属性的比较。已通过一些实验验证对这些RFQ进行模式分析的完整3-D模拟。

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