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Design Process for Synchrotron RF Cavities Loaded With Magnetic Ring Cores

机译:磁环芯加载同步加速器射频腔的设计过程

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摘要

Cavities loaded with magnetic ring cores are often used in synchrotrons if the desired operating frequency is in the lower megahertz range. The properties of such a cavity are strongly determined by the ring cores. However, other cavity components also have an important influence. During the design phase of such a cavity, full-wave simulations are not the first choice because computational modeling of parts like magnetic ring cores is complicated and because the influence of the ring core material data is often larger than that of the cavity geometry. In the past, these types of cavities have often been built without performing 3-D simulations. While standard acceleration cavities can be developed rather accurately by experienced designers, the coupling between amplifier and cavity or the development of more advanced cavity systems e.g., for barrier bucket operation or longitudinal feedback still bears some risks. In this article, at hand, we describe a new development process that was successfully used for the development of an MA-loaded broadband cavity. It is based on the broadband lumped-element circuits for single-ring cores. We used standardized ring-core measurements to obtain the required impedance data, but analytical methods can, in general, be used as well. The lumped-element circuits for the ring cores are used in a PSpice model of the whole cavity, allowing for simulations in frequency and time domain. We will show that the simulation results are in good agreement with measurements of the overall cavity.
机译:如果所需的工作频率在较低的兆赫兹范围内,则通常在同步加速器中使用装有磁环芯的腔。这种空腔的性能强烈地取决于环芯。但是,其他腔体组件也具有重要影响。在这种型腔的设计阶段,全波仿真不是首选,因为诸如磁环芯之类的零件的计算建模非常复杂,并且由于环型芯材料数据的影响通常大于型腔几何形状的影响。过去,通常在不执行3-D模拟的情况下构建这些型腔。尽管经验丰富的设计人员可以相当准确地开发出标准的加速腔,但放大器与腔之间的耦合或开发更先进的腔系统(例如,用于挡板铲斗操作或纵向反馈)仍然存在一些风险。在本文中,我们描述了一种新的开发过程,该过程已成功用于MA负载宽带腔的开发。它基于用于单环内核的宽带集总元件电路。我们使用标准化的环形磁芯测量来获得所需的阻抗数据,但通常也可以使用分析方法。环形芯的集总元件电路用于整个腔体的PSpice模型中,从而可以在频域和时域中进行仿真。我们将显示仿真结果与整个空腔的测量结果非常吻合。

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