均匀化束流传输线自动化调试算法研究与实验

Researches and experiments on automated algorithm for uniformization of beam on transport line

  • 摘要: 为了使高功率质子束流在靶上均匀分布,中国原子能科学研究院的18 MeV/1 mA强流回旋加速器配备了基于非线性磁铁的均匀化束流传输线。针对该束线,提出并实现了一种自动化束流调试方法,通过实时分析束线末端荧光靶上束斑图像,解析束斑中心位置、尺寸与均匀度信息,并据此调整导向磁铁、四极透镜和非线性磁铁等元件励磁电流,实现束流对中,扩束和均匀化效果,成功在荧光靶上得到尺寸为60 mm×60 mm,水平均匀度92.4%,垂直均匀度90.7%的近似方形束斑。

     

    Abstract:
    Background High-power proton beams extracted from cyclotrons usually have small transverse dimensions and nonuniform intensity distributions, which may lead to localized power deposition, excessive thermal load, and reduced target lifetime when directly delivered to the target.
    Purpose To improve the target beam distribution, this study proposes and verifies an automatic beam tuning method for the nonlinear-magnet-based beam transport line of the 18 MeV/1 mA high-current proton cyclotron at the China Institute of Atomic Energy (CIAE), aiming to realize beam centering, beam expansion, and beam uniformization. The beamline consists of steering magnets, quadrupole magnets, and nonlinear magnets for beam orbit correction, envelope control, and transverse distribution shaping.
    Methods During the tuning process, the beam spot image on the fluorescent screen installed at the end of the beamline is acquired and analyzed in real time. The beam center, spot size, and transverse uniformity are extracted from the image, and the excitation currents of the steering magnets, quadrupole magnets, and nonlinear magnets are adjusted accordingly.
    Results After automatic tuning, a square beam spot with a size of 60 mm × 60 mm was obtained on the fluorescent screen. The measured horizontal and vertical uniformities reached 92.4% and 90.7%, respectively.
    Conclusions The proposed automatic beam tuning method based on real-time beam image analysis can effectively control the beam position, expand the beam spot, and improve the transverse beam uniformity, demonstrating its applicability to compact high-current proton beam transport lines using nonlinear magnets.

     

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