Tomographic diagnostic of the hydrogen beam from a negative ion source

被引:21
|
作者
Agostini, M. [1 ]
Brombin, M. [1 ]
Serianni, G. [1 ]
Pasqualotto, R. [1 ]
机构
[1] Assoc EURATOM ENEA Fus, Consorzio RFX, Padua, Italy
来源
PHYSICAL REVIEW SPECIAL TOPICS-ACCELERATORS AND BEAMS | 2011年 / 14卷 / 10期
关键词
NEUTRAL BEAMS; POSED PROBLEMS; LIMITED-DATA; L-CURVE; PERFORMANCE; JT-60U; SPECTROSCOPY; IMPROVEMENT; ALGORITHMS; SYSTEM;
D O I
10.1103/PhysRevSTAB.14.102801
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
In this paper the tomographic diagnostic developed to characterize the 2D density distribution of a particle beam from a negative ion source is described. In particular, the reliability of this diagnostic has been tested by considering the geometry of the source for the production of ions of deuterium extracted from an rf plasma (SPIDER). SPIDER is a low energy prototype negative ion source for the international thermonuclear experimental reactor (ITER) neutral beam injector, aimed at demonstrating the capability to create and extract a current of D(-) (H(-)) ions up to 50 A (60 A) accelerated at 100 kV. The ions are extracted over a wide surface (1: 52 x 0: 56 m(2)) with a uniform plasma density which is prescribed to remain within 10% of the mean value. The main target of the tomographic diagnostic is the measurement of the beam uniformity with sufficient spatial resolution and of its evolution throughout the pulse duration. To reach this target, a tomographic algorithm based on the simultaneous algebraic reconstruction technique is developed and the geometry of the lines of sight is optimized so as to cover the whole area of the beam. Phantoms that reproduce different experimental beam configurations are simulated and reconstructed, and the role of the noise in the signals is studied. The simulated phantoms are correctly reconstructed and their two-dimensional spatial nonuniformity is correctly estimated, up to a noise level of 10% with respect to the signal.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Tomography feasibility study on the optical emission spectroscopy diagnostic for the negative ion source of the ELISE test facility
    Bonomo, F.
    Agostini, M.
    Brombin, M.
    Fantz, U.
    Franzen, P.
    Pasqualotto, R.
    Wuenderlich, D.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2014, 56 (01)
  • [22] Development of an ion beam detector for the atomic beam probe diagnostic
    Hacek, P.
    Berta, M.
    Anda, G.
    Aradi, M.
    Bencze, A.
    Dunai, D.
    Krbec, J.
    Panek, R.
    Refy, D. I.
    Stockel, J.
    Weinzettl, V.
    Zoletnik, S.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2018, 89 (11)
  • [23] Characteristics of Volume Produced Negative Hydrogen Ions in a Field-Effect-Transistor Based Ion Source
    Tanaka, N.
    Funaoi, T.
    Oikawa, K.
    Saito, Y.
    Nakano, H.
    Ando, A.
    THIRD INTERNATIONAL SYMPOSIUM ON NEGATIVE IONS, BEAMS AND SOURCES (NIBS 2012), 2013, 1515 : 263 - 269
  • [24] Study of the Parameters Affecting Ion Beam-Emerging from Cold Conical Cathode Ion Source
    El-Khabeary, H.
    BRAZILIAN JOURNAL OF PHYSICS, 2010, 40 (03) : 327 - 332
  • [25] Laser ion source development at Holifield Radioactive Ion Beam Facility
    Liu, Y.
    Gottwald, T.
    Havener, C. C.
    Howe, J. Y.
    Kiggans, J.
    Mattolat, C.
    Vane, C. R.
    Wendt, K.
    Beene, J. R.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2012, 83 (02)
  • [26] Power loading of electrons ejected from the JT-60 negative ion source
    Hanada, Masaya
    Ikeda, Yoshitaka
    Kamada, Masaki
    Grisham, Laffy R.
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2008, 36 (04) : 1530 - 1535
  • [27] Negative ion source development for fusion application (invited)
    Takeiri, Yasuhiko
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2010, 81 (02)
  • [28] Spectroscopic diagnostics for the negative ion RF source SPIDER
    Pasqualotto, R.
    Gazza, E.
    Serianni, G.
    Zaniol, B.
    Agostini, M.
    Alfier, A.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2010, 623 (02) : 794 - 796
  • [29] Low energy micron size beam from inductively coupled plasma ion source
    Nabhiraj, P. Y.
    Menon, Ranjini
    Bhandari, R. K.
    Rao, G. Mohan
    Mohan, S.
    JOURNAL OF VACUUM SCIENCE & TECHNOLOGY B, 2011, 29 (05):
  • [30] Study on production and extraction of negative impurity ions in a caesiated negative ion source
    Bharathi, P.
    Deka, A. J.
    Bandyopadhyay, M.
    Bhuyan, M.
    Pandya, K.
    Yadav, R. K.
    Tyagi, H.
    Gahlaut, A.
    Chakraborty, A.
    NUCLEAR FUSION, 2020, 60 (04)