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Qingmei XIAO (肖青梅), Zhibin WANG (王志斌), Xiaogang WANG (王晓钢), Chijie XIAO (肖池阶), Xiaoyi YANG (杨肖易), Jinxing ZHENG (郑金星). Conceptual design of Dipole Research Experiment (DREX)[J]. Plasma Science and Technology, 2017, 19(3): 35301-035301. DOI: 10.1088/2058-6272/19/3/035301
Citation: Qingmei XIAO (肖青梅), Zhibin WANG (王志斌), Xiaogang WANG (王晓钢), Chijie XIAO (肖池阶), Xiaoyi YANG (杨肖易), Jinxing ZHENG (郑金星). Conceptual design of Dipole Research Experiment (DREX)[J]. Plasma Science and Technology, 2017, 19(3): 35301-035301. DOI: 10.1088/2058-6272/19/3/035301
  • A new terrella-like device for laboratory simulation of inner magnetosphere plasmas, Dipole Research Experiment, is scheduled to be built at the Harbin Institute of Technology (HIT), China, as a major state scientific research facility for space physics studies. It is designed to provide a ground experimental platform to reproduce the inner magnetosphere to simulate the processes of trapping, acceleration, and transport of energetic charged particles restrained in a dipole magnetic field configuration. The scaling relation of hydromagnetism between the laboratory plasma of the device and the geomagnetosphere plasma is applied to resemble geospace processes in the Dipole Research Experiment plasma. Multiple plasma sources, different kinds of coils with specific functions, and advanced diagnostics are designed to be equipped in the facility for multi-functions. The motivation, design criteria for the Dipole Research Experiment experiments and the means applied to generate the plasma of desired parameters in the laboratory are also described.
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