Design and verification of a novel high gradient quadrupole magnet
BackgroundHigh gradient quadrupole magnet has become a key element with the development of diffraction-limited storage ring for the fourth generation light source. The gradient of magnetic field of a quadrupole magnet depends on the inscribed radius, ampere-turns per pole and magnetic efficiency. Ho...
| Published in: | He jishu |
|---|---|
| Main Authors: | , , |
| Format: | Article |
| Language: | Chinese |
| Published: |
Science Press
2022-07-01
|
| Subjects: | |
| Online Access: | https://www.hjs.sinap.ac.cn/thesisDetails#10.11889/j.0253-3219.2022.hjs.45.070102&lang=zh |
| _version_ | 1857127487579881472 |
|---|---|
| author | ZHU Ya ZHANG Qinglei ZHOU Qiaogen |
| author_facet | ZHU Ya ZHANG Qinglei ZHOU Qiaogen |
| author_sort | ZHU Ya |
| collection | DOAJ |
| container_title | He jishu |
| description | BackgroundHigh gradient quadrupole magnet has become a key element with the development of diffraction-limited storage ring for the fourth generation light source. The gradient of magnetic field of a quadrupole magnet depends on the inscribed radius, ampere-turns per pole and magnetic efficiency. However, the radius and ampere-turns per pole cannot be reduced or increased indefinitely. Improving magnetic efficiency has become an effective method to improve the gradient of magnetic field.PurposeThis study aims to design a novel magnetic circuit to improve magnetic efficiency and verify the effectiveness by simulation.MethodsPermanent magnets were installed on both sides of the poles face to improve the efficiency of saturated magnets, so as to improve the magnetic field gradient of the quadrupole magnet. A novel high gradient quadrupole magnet, targeted 100 T·m-1, was designed to verify the theory by simulation calculation using Poisson for 2D analysis and OPERA for 3D analysis. The effect to the magnetic field quality of the novel magnetic circuit was optimized to achieve good field region.ResultsSimulation results show the magnetic field gradient of designed novel high gradient quadrupole magnet reaches to 100 T·m-1 when the ampere-turns per pole is about 5400AT. The magnetic efficiency is about 91%. All of the multipole components of magnetic field meet the requirements.ConclusionsThe design of the new quadrupole magnet provides a feasible and effective solution for the design of high gradient quadrupole magnet in the future. |
| format | Article |
| id | doaj-art-9fdf7080e1fc4cbfafccba266c63e9c8 |
| institution | Directory of Open Access Journals |
| issn | 0253-3219 |
| language | zho |
| publishDate | 2022-07-01 |
| publisher | Science Press |
| record_format | Article |
| spelling | doaj-art-9fdf7080e1fc4cbfafccba266c63e9c82025-08-19T19:06:46ZzhoScience PressHe jishu0253-32192022-07-0145707010207010210.11889/j.0253-3219.2022.hjs.45.0701020253-3219(2022)07-0021-06Design and verification of a novel high gradient quadrupole magnetZHU Ya0ZHANG Qinglei1ZHOU Qiaogen2Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, ChinaShanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, ChinaShanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, ChinaBackgroundHigh gradient quadrupole magnet has become a key element with the development of diffraction-limited storage ring for the fourth generation light source. The gradient of magnetic field of a quadrupole magnet depends on the inscribed radius, ampere-turns per pole and magnetic efficiency. However, the radius and ampere-turns per pole cannot be reduced or increased indefinitely. Improving magnetic efficiency has become an effective method to improve the gradient of magnetic field.PurposeThis study aims to design a novel magnetic circuit to improve magnetic efficiency and verify the effectiveness by simulation.MethodsPermanent magnets were installed on both sides of the poles face to improve the efficiency of saturated magnets, so as to improve the magnetic field gradient of the quadrupole magnet. A novel high gradient quadrupole magnet, targeted 100 T·m-1, was designed to verify the theory by simulation calculation using Poisson for 2D analysis and OPERA for 3D analysis. The effect to the magnetic field quality of the novel magnetic circuit was optimized to achieve good field region.ResultsSimulation results show the magnetic field gradient of designed novel high gradient quadrupole magnet reaches to 100 T·m-1 when the ampere-turns per pole is about 5400AT. The magnetic efficiency is about 91%. All of the multipole components of magnetic field meet the requirements.ConclusionsThe design of the new quadrupole magnet provides a feasible and effective solution for the design of high gradient quadrupole magnet in the future.https://www.hjs.sinap.ac.cn/thesisDetails#10.11889/j.0253-3219.2022.hjs.45.070102&lang=zhquadrupole magnethigh gradient of magnetic fieldpermanent magnetmagnetic field quality |
| spellingShingle | ZHU Ya ZHANG Qinglei ZHOU Qiaogen Design and verification of a novel high gradient quadrupole magnet quadrupole magnet high gradient of magnetic field permanent magnet magnetic field quality |
| title | Design and verification of a novel high gradient quadrupole magnet |
| title_full | Design and verification of a novel high gradient quadrupole magnet |
| title_fullStr | Design and verification of a novel high gradient quadrupole magnet |
| title_full_unstemmed | Design and verification of a novel high gradient quadrupole magnet |
| title_short | Design and verification of a novel high gradient quadrupole magnet |
| title_sort | design and verification of a novel high gradient quadrupole magnet |
| topic | quadrupole magnet high gradient of magnetic field permanent magnet magnetic field quality |
| url | https://www.hjs.sinap.ac.cn/thesisDetails#10.11889/j.0253-3219.2022.hjs.45.070102&lang=zh |
| work_keys_str_mv | AT zhuya designandverificationofanovelhighgradientquadrupolemagnet AT zhangqinglei designandverificationofanovelhighgradientquadrupolemagnet AT zhouqiaogen designandverificationofanovelhighgradientquadrupolemagnet |
