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Development of Dual-Harmonic RF System for CSNS-II

JOURNAL OF INSTRUMENTATION(2024)

Chinese Acad Sci

Cited 0|Views10
Abstract
The upgrade of the China Spallation Neutron Source (CSNS-II) encompasses the development of a dual harmonic RF system for the Rapid Cycling Synchrotron (RCS). The objective of this system is to achieve a maximum second harmonic voltage of 100 kV. To meet this requirement, a high gradient cavity is being used in place of the traditional ferrite loaded cavity. Magnetic alloy (MA) loaded cavities, which can attain very high field gradients, have demonstrated their suitability for high -intensity proton synchrotrons. As a result, designing an RF system with MA -loaded cavities has emerged as a primary focus. Over the past decade, substantial advancements have been made in the development of MA -loaded cavities at CSNS. This paper provides an overview of the RF system that incorporates the MA -loaded cavity and presents the high -power test and beam test results of the system.
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Acceleration cavities and superconducting magnets (high-temperature superconductor, radiation hardened magnets, normal-conducting, permanent magnet devices, wigglers and undulators),Accelerator Subsystems and Technologies,Instrumentation for particle accelerators and storage rings- high energy (linear accelerators, synchrotrons)
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要点】:本文介绍了为中国散裂中子源CSNS-II的快速循环同步加速器(RCS)开发的双谐波射频系统,采用磁合金(MA)加载的高梯度腔体以实现100 kV的最大二次谐波电压,实现射频系统的创新设计。

方法】:通过设计并使用磁合金(MA)加载的谐振腔替代传统铁磁加载谐振腔,以达到系统所需的电压梯度。

实验】:本文展示了MA加载腔体射频系统的高功率测试和束流测试结果,但未具体提及使用的数据集名称。