首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Extraction channel design based on an equivalent lumped parameter method for a SCC-250 MeV superconducting cyclotron
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Extraction channel design based on an equivalent lumped parameter method for a SCC-250 MeV superconducting cyclotron

机译:基于等效集总参数方法的SCC-250 MeV超导回旋加速器提取通道设计

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摘要

A SCC-250 MeV cyclotron, producing a 250 MeV proton beam, is under development in Huazhong University of Science and Technology (HUST) for proton therapy. The magnetic flux density, as a function of radius, decreases rapidly in the beam extraction region, which increases the radial beam size continuously along the extraction orbit. In this paper, an extraction channel inside the SCC-250 MeV is designed to control the beam size using passive magnetic channels. An equivalent lumped parameter method is used to establish the model of the extraction channel in the complex fringe magnetic field of the main magnet. Then, the extraction channel is designed using the lattice design software MADX. The beam envelopes are verified using particle tracing method. The maximum radial size of 6.8 mm and axial size of 4.3 mm meet the requirements of the extraction from the SCC-250 MeV.
机译:华中科技大学(HUST)正在研发一种产生250 MeV质子束的SCC-250 MeV回旋加速器,用于质子治疗。在束提取区域中,作为半径的函数的磁通密度迅速减小,这沿提取轨道连续增加径向束的大小。在本文中,设计了SCC-250 MeV内部的提取通道,以使用无源磁通道控制光束大小。采用等效集总参数法建立主磁体复条纹磁场中抽气通道的模型。然后,使用晶格设计软件MADX设计提取通道。使用粒子跟踪方法验证光束包络。最大径向尺寸为6.8 mm,轴向尺寸为4.3 mm,满足从SCC-250 MeV提取的要求。

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