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Dielectric-Filled Reentrant Cavity Resonator as a Low-Intensity Proton Beam Diagnostic

机译:介电填充的倒退腔谐振器作为低强度质子束诊断

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摘要

Measurement of the proton beam current (0.1–40 nA) at the medical treatment facility PROSCAN at the Paul Scherrer Institut (PSI) is performed with ionization chambers. To mitigate the scattering issues and to preserve the quality of the beam delivered to the patients, a non-interceptive monitor based on the principle of a reentrant cavity resonator has been built. The resonator with a fundamental resonance frequency of 145.7 MHz was matched to the second harmonic of the pulse repetition rate (72.85 MHz) of the beam extracted from the cyclotron. This was realized with the help of ANSYS HFSS (High Frequency Structural Simulator) for network analysis. Both, the pickup position and dielectric thickness were optimized. The prototype was characterized with a stand-alone test bench. There is good agreement between the simulated and measured parameters. The observed deviation in the resonance frequency is attributed to the frequency dependent dielectric loss tangent. Hence, the dielectric had to be resized to tune the resonator to the design resonance frequency. The measured sensitivity performances were in agreement with the expectations. We conclude that the dielectric reentrant cavity resonator is a promising candidate for measuring low proton beam currents in a non-destructive manner.
机译:在在保罗谢勒研究所(PSI)的医疗设施PROSCAN质子束电流(0.1-40 NA)的测量是用电离室进行。为了减轻散射问题,并保留交付给患者的光束质量的基础上,凹状空腔谐振器的原理非遮断显示器已建成。与145.7 MHz的基本谐振频率的谐振器匹配于第二谐波从回旋加速器提取的束的脉冲重复率(72.85兆赫)的。这与ANSYS HFSS(高频结构仿真器)的网络分析的帮助下实现的。既,拾取位置和介电层厚度进行了优化。原型的特征是,一个独立的试验台。还有就是模拟和测量参数之间良好的一致性。在谐振频率被观察者偏差归因于频率相关的介质损耗角正切。因此,电介质必须被调整以调谐所述谐振器的设计的谐振频率。测量的灵敏度表现均符合预期一致。我们的结论是该介电凹状空腔谐振器是用于以非破坏性的方式测量低质子束电流有希望的候选。

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