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Investigation and quantitative simulation of beam physics for 230 MeV SC cyclotron under construction at CIAE

机译:CIAE正在施工的230 MeV SC回旋加速器的束流物理研究和定量模拟

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In China, there is a strong demand of the medium-energy proton accelerators for proton therapy. A compact superconducting cyclotron named CYCIAE-230 is currently under construction at CIAE to provide 230 MeV proton beam. In this paper, the investigation and quantitative simulation of beam physics for CYCIAE-230 will be presented in detail, which mainly include: 1. The beam dynamics behavior in the ultra compact central region and the design challenges including the micro PIG ion source, the tips of magnetic poles and RF cavities; 2. the numerical simulation and optimization of the phase slip and tune diagram in acceleration region; 3. the orbit simulation in the extraction region, emphasizing on increasing the turn separation and the resonance study; 4. the fast intensity modulation, control of beam stabilization by a closed-loop feedback, and the basic algorithm for controlling the beam intensity, adjusting the phase and their implementations.
机译:在中国,对中能质子加速器的质子治疗有强烈的需求。 CIAE目前正在建造一种名为CYCIAE-230的紧凑型超导回旋加速器,以提供230 MeV质子束。本文将详细介绍CYCIAE-230束物理的研究和定量模拟,主要包括:1.超紧凑中心区域的束动力学行为以及包括微型PIG离子源,磁极尖端和RF腔; 2,加速区域相位滑移和调谐图的数值模拟和优化; 3.提取区域的轨道模拟,重点在于增加转弯间隔和共振研究; 4.快速强度调制,通过闭环反馈控制光束稳定以及控制光束强度,调整相位的基本算法及其实现。

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