Zhao H W, Sun L T, Zhang X Z, Guo X H, Cao Y, Lu W, Zhang Z M, Yuan P, Song M T, Zhao H Y, Jin T, Shang Y, Zhan W L, Wei B W, Xie D Z
Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou, PR China.
Rev Sci Instrum. 2008 Feb;79(2 Pt 2):02A315. doi: 10.1063/1.2804900.
There has been increasing demand to provide higher beam intensity and high enough beam energy for heavy ion accelerator and some other applications, which has driven electron cyclotron resonance (ECR) ion source to produce higher charge state ions with higher beam intensity. One of development trends for highly charged ECR ion source is to build new generation ECR sources by utilization of superconducting magnet technology. SECRAL (superconducting ECR ion source with advanced design in Lanzhou) was successfully built to produce intense beams of highly charged ion for Heavy Ion Research Facility in Lanzhou (HIRFL). The ion source has been optimized to be operated at 28 GHz for its maximum performance. The superconducting magnet confinement configuration of the ion source consists of three axial solenoid coils and six sextupole coils with a cold iron structure as field booster and clamping. An innovative design of SECRAL is that the three axial solenoid coils are located inside of the sextupole bore in order to reduce the interaction forces between the sextupole coils and the solenoid coils. For 28 GHz operation, the magnet assembly can produce peak mirror fields on axis of 3.6 T at injection, 2.2 T at extraction, and a radial sextupole field of 2.0 T at plasma chamber wall. During the commissioning phase at 18 GHz with a stainless steel chamber, tests with various gases and some metals have been conducted with microwave power less than 3.5 kW by two 18 GHz rf generators. It demonstrates the performance is very promising. Some record ion beam intensities have been produced, for instance, 810 e microA of O(7+), 505 e microA of Xe(20+), 306 e microA of Xe(27+), and so on. The effect of the magnetic field configuration on the ion source performance has been studied experimentally. SECRAL has been put into operation to provide highly charged ion beams for HIRFL facility since May 2007.
对于重离子加速器及其他一些应用而言,提供更高束流强度和足够高的束流能量的需求不断增加,这推动电子回旋共振(ECR)离子源产生具有更高束流强度的更高电荷态离子。高电荷ECR离子源的发展趋势之一是利用超导磁体技术建造新一代ECR源。兰州重离子加速器冷却储存环超导ECR离子源(SECRAL)成功建成,为兰州重离子研究装置(HIRFL)提供强流高电荷态离子束。该离子源已优化为在28GHz运行以实现其最佳性能。离子源的超导磁体约束配置由三个轴向螺线管线圈和六个六极线圈组成,采用冷铁结构作为场增强器和夹具。SECRAL的一个创新设计是三个轴向螺线管线圈位于六极孔内部,以减少六极线圈和螺线管线圈之间的相互作用力。对于28GHz运行,磁体组件在注入时可在轴上产生3.6T的峰值镜场,在引出时为2.2T,在等离子体腔壁处产生2.0T的径向六极场。在18GHz不锈钢腔的调试阶段,由两台18GHz射频发生器在微波功率小于3.5kW的情况下对各种气体和一些金属进行了测试。结果表明性能非常有前景。产生了一些创纪录的离子束强度,例如,氧离子O(7+)的束流强度为810e微安,氙离子Xe(20+)为505e微安,Xe(27+)为306e微安等等。已通过实验研究了磁场配置对离子源性能的影响。自2007年5月以来,SECRAL已投入运行,为HIRFL装置提供高电荷态离子束。