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http://dx.doi.org/10.9714/psac.2016.18.4.040

Control the length of beam trajectory with a quadruple triplet for heavy ion accelerator  

Wei, Shaoqing (Uiduk University)
Zhang, Zhan (Uiduk University)
Lee, Sangjin (Uiduk University)
Kim, Do Gyun (Rare Isotope Science Project, Institute for Basic Science)
Kim, Jang Youl (Rare Isotope Science Project, Institute for Basic Science)
Publication Information
Progress in Superconductivity and Cryogenics / v.18, no.4, 2016 , pp. 40-43 More about this Journal
Abstract
Beam trajectory is needed to be controlled in heavy ion accelerator system. Quadruple magnets are widely used in heavy ion accelerator for focusing the transporting particles. A quadruple triplet system which consists of three consecutive quadrupoles, Q1, Q2 and Q3, is used to control beam trajectory at a focused position. Q1 and Q3 have symmetry with respect to Q2. The beam trajectory in magnet system is affected by higher order fields existed in real fields. For quadrupoles, the representation simulation of beam trajectory was carried out to study the beam trajectory and to estimate an effect of higher order field in triplet system. SCALA program was used to simulate the beam trajectory in $Opera^{TM}$. SCALA can analyze a large number of beam trajectories at the same time by adjusting the size of finite element of the emitter. With $Opera^{TM}$ and $Matlab^{TM}$ programs, the position of focused beam spot in quadruple triplet system can be increased or decreased using evolution strategy (ES) method, therefore the length of triplet system can be controlled. Finally, the quadruple triplet system with the appropriate length and expected beam spot range was suggested in this paper.
Keywords
Beam trajectory; Beam spot; Evolution strategy; Heavy ion accelerator; The length of quadruple triplet;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
연도 인용수 순위
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