质子同步加速器
磁铁
同步加速器
波形
物理
偶极子
梁(结构)
粒子加速器
质子
计算物理学
同步辐射
直线粒子加速器
瞬态(计算机编程)
偶极磁铁
核磁共振
核工程
核物理学
光学
电压
超导磁体
计算机科学
工程类
操作系统
量子力学
作者
Minghua Lyu,Lixia Zhao,Lizhen Ma,Jing Yang,J.J. Zhang,Wei Wu,X. Zhang,Wei You,Qinggao Yao
标识
DOI:10.1088/1748-0221/17/08/p08006
摘要
Abstract Space Environment Simulation and Research Infrastructure (SESRI) is a new national research infrastructure under construction at Harbin Institute of Technology (HIT) in China. Its 300-MeV proton and heavy ion accelerator is a major radiation source, and a compact synchrotron has been designed with a circumference of less than 44 m. The synchrotron dipoles are essential components of the accelerator, and they have been designed and tested carefully to meet the stringent physical requirements. The measured transverse field homogeneity is less than 2 × 10 -4 from 0.2 T to 1.4 T and roughly agrees with the simulated results. With a modified linear programming algorithm, the integral magnetic field uniformity within 0.2–1.1 T is optimised from 6 × 10 -4 to 1.5 × 10 -4 , and the corresponding multi-pole field-component errors are greatly reduced. By shortening the pole ends, the reproducibility of integral field among six magnets at 0.2 T is less than 3 × 10 -4 . In addition, the transient effect of the magnetic field is also evaluated and tested. Through analysis of the transient effect and structural strength, low-carbon steel and stainless steel are selected for the side plates and end plates, respectively. According to the transient measurement results, the feedforward compensation can be implemented to produce a more accurate current waveform. On 1 January 2022, the beam was successfully accumulated with the preset current waveform, and the beam intensity met the design requirements.
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