Cleva Stefano, Bassanese Silvano, Comisso Massimiliano, El Ajjouri Moussa, Sergo Rudi, Morello Christian, Passarelli Andrea
Elettra Sincrotrone Trieste, Area Science Park, 34149 Trieste, Italy.
Department of Engineering and Architecture, University of Trieste, Via A. Valerio 10, 34127 Trieste, Italy.
Sensors (Basel). 2024 Apr 25;24(9):2726. doi: 10.3390/s24092726.
This paper addresses the design of beam position monitor (BPM) devices suitable for fourth-generation diffraction-limited X-ray storage rings. Detailed investigations of the electromagnetic (EM) phenomena occurring inside the component under various working conditions are carried out by considering different BPM EM models defined by their geometry and materials. Moving from a theoretical characterization of the common round geometry, rhomboidal structures are studied through a careful numerical analysis relying on advanced computer-aided tools. Several critical elements, such as wakefields, pick-up signal extraction, and trapped and propagating modes, are explored from the simulation point of view and from the experimental one, by deploying a manufactured microwave test bench, which is employed to measure the radio frequency behavior of a BPM prototype built at Elettra Sincrotrone Trieste. The aim of the proposed study is to identify a satisfactory tradeoff between achievable performance and practical realizability for BPM devices operating in last-generation light sources.
本文探讨了适用于第四代衍射极限X射线存储环的束流位置监测器(BPM)装置的设计。通过考虑由其几何形状和材料定义的不同BPM电磁模型,对该部件在各种工作条件下发生的电磁(EM)现象进行了详细研究。从常见圆形几何形状的理论特性出发,通过依靠先进计算机辅助工具的仔细数值分析,对菱形结构进行了研究。通过部署一个制造的微波测试台,从模拟和实验两个角度探索了几个关键要素,如尾场、拾取信号提取以及捕获和传播模式,该测试台用于测量在意大利的里雅斯特同步加速器实验室制造的BPM原型的射频行为。本研究的目的是为在上一代光源中运行的BPM装置确定在可实现的性能和实际可实现性之间令人满意的权衡。