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Qingmei XIAO (肖青梅), Zhibin WANG (王志斌), Peng E (鄂鹏), Xiaogang WANG (王晓钢), Chijie XIAO (肖池阶), Yang REN (任洋), Hantao JI (吉瀚涛), Aohua MAO (毛傲华), Liyi LI (李立毅). Development of plasma sources for Dipole Research EXperiment (DREX)[J]. Plasma Science and Technology, 2017, 19(5): 55302-055302. DOI: 10.1088/2058-6272/aa6539
Citation: Qingmei XIAO (肖青梅), Zhibin WANG (王志斌), Peng E (鄂鹏), Xiaogang WANG (王晓钢), Chijie XIAO (肖池阶), Yang REN (任洋), Hantao JI (吉瀚涛), Aohua MAO (毛傲华), Liyi LI (李立毅). Development of plasma sources for Dipole Research EXperiment (DREX)[J]. Plasma Science and Technology, 2017, 19(5): 55302-055302. DOI: 10.1088/2058-6272/aa6539
  • Dipole Research EXperiment (DREX) is a new terrella device as part of the Space Plasma Environment Research Facility (SPERF) for laboratory studies of space physics relevant to the inner magnetospheric plasmas. Adequate plasma sources are very important for DREX to achieve its scientific goals. According to different research requirements, there are two density regimes for DREX. The low density regime will be achieved by an electron cyclotron resonance (ECR) system for the ‘whistler/chorus’ wave investigation, while the high density regime will be achieved by biased cold cathode discharge for the desired ‘Alfvén’ wave study. The parameters of ‘whistler/chorus’ waves and ‘Alfvén’ waves are determined by the scaling law between space and laboratory plasmas in the current device. In this paper, the initial design of these two plasma sources for DREX is described. Focus is placed on the chosen frequency and operation mode of the ECR system which will produce relatively low density ‘arti?cial radiation belt’ plasmas and the seed electrons, followed by the design of biased cold cathode discharge to generate plasma with high density.
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