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Development of a high-current ion source with slit beam extraction for neutral beam injector of VEST

机译:VEST中性束注入器的带裂隙束提取的高电流离子源的开发

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A high-current pulsed ion source has been developed for the neutral beam injector of the VEST (Versatile Experiment Spherical Torus) to accommodate high-beta fusion plasma experiments. The ion source consists of two parts: an electron gun for supplying sufficient primary electrons by cold-cathode arc discharge and a hemi-cylindrical discharge chamber where uniform, high-density plasma generated by the primary electrons is confined by multi-cusp magnetic field. A pulse forming network is also developed to drive high current of similar to 1 kA to sustain the cold-cathode discharge in the electron gun up to 10 ms. Diagnostics with a triple probe in the discharge chamber shows that a hydrogen plasma whose density is as high as 1 x 10(18) m(-3) can be obtained near extraction slits at the gas pressure lower than 0.5 Pa. This value is estimated to be sufficient to deposit a heating power of 90 kW to the VEST plasma when the appropriate extraction through slits with 20 cm(2) in area and acceleration of ion beams up to 20 kV are fulfilled. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经为VEST(多功能实验球形圆环)的中性束注入器开发了高电流脉冲离子源,以适应高β融合等离子体实验。离子源由两部分组成:用于通过冷阴极电弧放电提供足够的一次电子的电子枪,以及通过半尖峰磁场限制一次电子产生的均匀,高密度等离子体的半圆柱形放电室。还开发了脉冲形成网络来驱动大约1 kA的高电流,以维持电子枪中的冷阴极放电长达10 ms。在放电室中使用三重探针进行的诊断表明,在低于0.5 Pa的气压下,可以在抽气口附近获得密度高达1 x 10(18)m(-3)的氢等离子体。估计该值当通过面积为20 cm(2)的缝隙进行适当的提取并且离子束的加速度达到20 kV时,足以将90 kW的加热功率沉积到VEST等离子体中。 (C)2015 Elsevier B.V.保留所有权利。

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