Proton Ratio of HL-2A Bucket Ion Source

  • Received Date: November 12, 2009
  • Published Date: March 31, 2010
  • For heating the tokamak plasma effectively, the ion source must be capable of producing ions with high proton ratio. The proton ratio, which is found to be more than 65.6% at the ion current of 19.6 A with the extraction voltage of 39.6 kV, is measured with an image spectrograph by Doppler shift effect of Balmer-α-radiation spectrum emitted from fast hydrogen particles. The tendency of proton ratio with the ion density in experiment is almost the same as the mode devised by Zhang et al. Okumura et al. only gave the affection of the plasma volume and ion loss area on the proton ratio, but the relationship between the ion density in chamber and the proton ratio was not presented. We give the relationship.
  • Article Text

  • [1] Lei G J, Jiang S F and Zhong G W et al 2008 Chine. Phys. C. Supp1. I 32 271 (in Chinese)
    [2] Zou G Q, Zhong G W and Lei G J et al 2008 Chin. Phys. C. Suppl . I 32 283 (in Chinese)
    [3] Yu L M, Zhong G W and Jiang S F et al 2009 Nucl. Fusion Plasma Phys. 29 55 (in Chinese)
    [4] Zou G Q, Lei G J and Jiang S F et al 2009 Chin. Phys. Lett. 26 082901
    [5] Yshikazu O, Hirioshi H and Kiyoshi M 1984 Rev. Sci. Instrum. 55 1
    [6] Zhang H S, Wan C H and Wang Geng J et al 1987 Ion Source and High Power Neutral Beam Injection Technology (Beijing: Atomic Energy Press) p 218 (in Chinese)
    [7] Uhlemann R, Hemsworth R S and Wang G et al 1993 Rev. Sci. Instrum. 64 974
    [8] Franzen P, Kraus K and Vollmer O et al 1999 26 th EPS Conf. Contr. Fusion and Plasma Physics} (Maaristricht 14--18 June 1999) ECA 23J p 1557
    [9] Wang Geng J, Uhlemann R and Euringer H 1993 Atom. Energy Sci. Technol. 27 214 (in Chinese)
    [10] Burrell C F, Cooper W S and Smith R R et al 1980 Rev. Sci. Instrum. 51 1451
    [11] Kim J and Haselton H H 1979 J. Appl. Phys. 50 3802
    [12] Sun P 2005 PhD Dissertation (Chengdu: Southwestern Institute of Physics) (in Chinese).
    [13] Sun P, Pan C H and Cui Z Y et al 2005 Nucl. Fusion Plasma Physics. 25 269 (in Chinese)
    [14] Lei G J, Jiang S F and Lu D L et al 2006 Report of SWIP (Chengdu: Southwestern Institute of Physics)
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