Manufacturing of a superconducting magnet system for 28 GHz electron cyclotron resonance ion source at KBSI
B. S. Lee, Seyong Choi, Jang‐Hee Yoon, J. Y. Park, Mi‐Sook Won
Abstract
B. S. Lee, Seyong Choi, Jang‐Hee Yoon, J. Y. Park, Mi‐Sook Won
Abstract
A magnet system for a 28 GHz electron cyclotron resonance ion source is being developed by the Korea Basic Science Institute. The configuration of the magnet system consists of 3 solenoid coils for a mirror magnetic field and 6 racetrack coils for a hexapole magnetic field. They can generate axial magnetic fields of 3.6 T at the beam injection part and 2.2 T at the extraction part. A radial magnetic field of 2.1 T is achievable at the plasma chamber wall. A step type winding process was employed in fabricating the hexapole coil. The winding technique was confirmed through repeated cooling tests. Superconducting magnets and a cryostat system are currently being manufactured.
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A magnet system for a 28 GHz electron cyclotron resonance ion source is being developed by the Korea Basic Science Institute. The configuration of the magnet system consists of 3 solenoid coils for a mirror magnetic field and 6 racetrack coils for a hexapole magnetic field. They can generate axial magnetic fields of 3.6 T at the beam injection part and 2.2 T at the extraction part. A radial magnetic field of 2.1 T is achievable at the plasma chamber wall. A step type winding process was employed in fabricating the hexapole coil. The winding technique was confirmed through repeated cooling tests. Superconducting magnets and a cryostat system are currently being manufactured.
Key concepts: Cryostat, Electron cyclotron resonance, Magnet, Solenoid, Superconducting magnet, Cyclotron, Magnetic mirror, Ion source