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Hui LIAO, Chaoqi HU, Yilin LI, Baoming REN, Xuan SUN. Experimental study of single-translated field-reversed configuration in KMAX[J]. Plasma Science and Technology, 2022, 24(9): 095103. DOI: 10.1088/2058-6272/ac64f1
Citation: Hui LIAO, Chaoqi HU, Yilin LI, Baoming REN, Xuan SUN. Experimental study of single-translated field-reversed configuration in KMAX[J]. Plasma Science and Technology, 2022, 24(9): 095103. DOI: 10.1088/2058-6272/ac64f1

Experimental study of single-translated field-reversed configuration in KMAX

  • For collisional merging field-reversed configurations (FRCs), it is desired to have both FRCs tuned to be approximately the same, as well as to optimize each FRC to have high temperature and high translation speed so as to retain most of the equilibrium flux after traveling a distance to the middle plane for merging. The present study reports the experimental study of a single-translated FRC in the KMAX-FRC device with various diagnostics, including a triple probe, a bolometer, several magnetic probe arrays, and a novel 2D internal magnetic probe array. According to the measurements conducted in the present study, a maximum toroidal magnetic field equal to ~1/3 of the external magnetic field inside the FRC separatrix radius is observed, and the typical parameters of a single-translated FRC near the device's mid-plane are ne~(2–4)×1019 m-3, Te~8 eV, Ti~5 eV, rs ~0.2 m, ls ~0.6 m and ϕp(RR) ~0.2 mWb. The 2D magnetic topology measurement revealed, for the first time, the time evolution of the overall internal magnetic fields of a single-translated FRC, and an optimized operation regime is given in the paper.
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