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Scattering parameters of the 3.9?GHz accelerating module in a free-electron laser linac: A rigorous comparison between simulations and measurements

机译:自由电子直线加速器中3.9?GHz加速模块的散射参数:模拟与测量之间的严格比较

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This article presents a comparison between measured and simulated scattering parameters in a wide frequency interval for the third harmonic accelerating module ACC39 in the linear accelerator FLASH, located at DESY in Hamburg/Germany. ACC39 is a cryomodule housing four superconducting 3.9 GHz accelerating cavities. Due to the special shape of the cavities (in particular its end cells and the beam pipes) in ACC39, the electromagnetic field in the module is, in many frequency ranges, coupled from one cavity to the next. Therefore, the scattering parameters are determined by the entire string and not solely by the individual cavities. This makes the determination of the scattering properties demanding. As far as the authors can determine, this paper shows for the first time a direct comparison between state-of-the-art simulations and measurements of rf properties of long, complex, and asymmetric structures over a wide frequency band. Taking into account the complexity of the system and various geometrical unknowns, the agreement between experimental measurements and simulations is remarkably good for several distinct measurements, although a variety of effects (e.g. cavity deviations from the ideal shape or interactions with not modeled parts of the structure) is not considered in the computer simulation. After a short introduction, the paper provides detailed descriptions of simulations and experimental measurements performed at the module. In this context, the estimation of the cable properties is discussed as well. As a central part of the article, the comparison between measured and simulated transmission spectra and quality factors is presented. This study represents one of the first detailed comparisons between simulations and measurements for a coupled accelerator cavity system.
机译:本文介绍了位于德国汉堡DESY的线性加速器FLASH中三次谐波加速模块ACC39在较宽频率范围内测得的和模拟的散射参数之间的比较。 ACC39是一种低温模块,可容纳四个超导3.9 GHz加速腔。由于ACC39中空腔的特殊形状(特别是其端电池和束管),模块中的电磁场在许多频率范围内从一个空腔耦合到下一个空腔。因此,散射参数由整个串确定,而不仅仅是由单个腔确定。这使得需要确定散射特性。根据作者的判断,本文首次展示了最新模拟与宽频带上长,复杂和不对称结构的rf特性测量之间的直接比较。考虑到系统的复杂性和各种几何未知数,尽管有多种影响(例如,腔体偏离理想形状或与未建模部件的相互作用),但实验测量和模拟之间的一致性对于几种不同的测量非常有用。 )不在计算机仿真中考虑。在简短介绍之后,本文提供了在模块上执行的仿真和实验测量的详细说明。在这种情况下,还将讨论电缆特性的估计。作为本文的中心部分,介绍了实测透射光谱和模拟透射光谱与质量因子之间的比较。这项研究代表了耦合加速器腔系统的仿真与测量之间的第一个详细比较。

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