Design And Investigations Of The Superconducting Magnet System For The Multipurpose Superconducting Electron Cyclotron Resonance Ion Source

REVIEW OF SCIENTIFIC INSTRUMENTS(2012)

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Abstract
The production of intense beams of heavy ions with electron cyclotron resonance ion sources (ECRIS) is an important request at many accelerators. According to the ECR condition and considering semi-empirical scaling laws, it is essential to increase the microwave frequency together with the magnetic flux density of the ECRIS magnet system. A useful frequency of 28 GHz, therefore, requires magnetic flux densities above 2.2 T implying the use of superconducting magnets. A cooperation of European institutions initiated a project to build a multipurpose superconducting ECRIS (MS-ECRIS) in order to achieve an increase of the performances in the order of a factor of ten. After a first design of the superconducting magnet system for the MS-ECRIS, the respective cold testing of the built magnet system reveals a lack of mechanical performance due to the strong interaction of the magnetic field of the three solenoids with the sextupole field and the magnetization of the magnetic iron collar. Comprehensive structural analysis, magnetic field calculations, and calculations of the force pattern confirm thereafter these strong interactions, especially of the iron collar with the solenoidal fields. The investigations on the structural analysis as well as suggestions for a possible mechanical design solution are given. (C) 2012 American Institute of Physics. [doi:10.1063/1.3666912]
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Key words
magnetic flux,microwave radiation,flux density,design,solenoids,superconducting magnets,performance testing,electron cyclotron resonance,iron,particle accelerators,magnetization,magnetic fields
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