DocumentCode :
1253611
Title :
Production of high-current large-area H- beams by a bucket-type ion source equipped with a magnetic filter
Author :
Tanaka, Masanobu ; Takeiri, Yasuhiko ; Asano, Eiji ; Kaneko, Osamu ; Kuroda, Tsutomu ; Kawakami, Hiroyuki ; Yamashita, Yasuo ; Uede, Taisei
Author_Institution :
Power & Ind. Syst. R&D Div., Hitachi Ltd., Ibaraki, Japan
Volume :
25
Issue :
6
fYear :
1997
fDate :
12/1/1997 12:00:00 AM
Firstpage :
1412
Lastpage :
1418
Abstract :
A negative-ion-based neutral beam injection (NBI) system is planned for plasma heating of the Large Helical Device (LHD). We have developed a negative ion source, which is 1/3 the scale of the source for the NBI. A magnetic filter held was generated by external permanent magnets to lower the electron temperature in a large-area bucket plasma source (35 cm×62 cm) for efficient H- production. We investigated the magnetic field configuration and found a low electron temperature high density plasma (<1 eV, 1012/cm3) could be achieved with an optimized configuration, The filter strength (Bmax=70 G, line-integral flux=780 G cm at the center axis of the source) was proved to be enough to lower the electron temperature below 1 eV at high arc discharge power (100 kW) and low pressure (0.4 Pa). We injected cesium vapor into the plasma source to enhance H- production efficiency and obtained a 16.2-A H- beam current (31 mA/cm2, 47 kV) using a large-area, four-grid electrostatic extraction system (25 cm×50 cm). This satisfied the development target (>15 A: 1/3 current of LHD ion source). Based on the results, we are designing a negative ion source for the LHD
Keywords :
beam handling equipment; hydrogen ions; ion beam applications; ion sources; negative ions; plasma beam injection heating; plasma devices; plasma temperature; stellarators; 0.4 Pa; 100 kW; 16.2 A; 25 cm; 35 cm; 47 kV; 50 cm; 62 cm; 70 G; H; H- production; LHD; Large Helical Device; NBI; bucket-type ion source; four-grid electrostatic extraction system; high arc discharge power; high-current large-area H- beams; large-area bucket plasma source; low electron temperature high density plasma; low pressure; magnetic filter; negative ion source; negative-ion-based neutral beam injection; plasma heating; plasma source; Electrons; Heating; Ion sources; Magnetic separation; Particle beam injection; Particle beams; Plasma devices; Plasma sources; Plasma temperature; Production;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/27.650911
Filename :
650911
Link To Document :
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