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Caesium influence on plasma parameters and source performance during conditioning of the prototype ITER neutral beam injector negative ion source

机译:铯对原型ITER中性束注入器负离子源的调节过程中对等离子体参数和源性能的影响

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Systematic Langmuir probe measurements were performed during the caesium (Cs) conditioning of the IPP prototype negative hydrogen ion source. Conditioning consists of slowly injecting caesium into the source in order to increase the extracted negative ion current and minimize the co-extracted electrons. This process usually takes several days. Measurements were taken near the plasma grid (PG) where the majority of the extracted negative ions are created. A clear transition between a poorly conditioned (volume dominated H- production) and a well conditioned (surface dominated H - production) source was seen. By following the plasma parameter variations, an overall decrease in the plasma potential, the floating potential and also the electron saturation current was observed. However, the ion saturation current remained constant. Consequently, near the PG where negative ions are generated and extracted, a transition occurred in the space charge balance (quasineutrality): the space charge is balanced by electrons when the source is poorly conditioned and by negative ions when the source is well conditioned.
机译:在IPP原型负氢离子源的铯(Cs)调节期间,进行了系统的Langmuir探针测量。调节包括将铯缓慢注入源中,以增加提取的负离子电流并最大程度地减少共提取的电子。此过程通常需要几天。测量是在等离子网格(PG)附近进行的,在该等离子体网格中会产生大部分提取的负离子。可以看到条件差的源(主要由H生成)和条件良好的(表面H占主导)源之间有明显的过渡。通过跟踪等离子体参数的变化,可以观察到等离子体电势,浮置电势以及电子饱和电流的总体下降。但是,离子饱和电流保持恒定。因此,在产生和提取负离子的PG附近,空间电荷平衡(准中性)发生了转变:当源条件差时,空间电荷由电子平衡;而当源条件好时,空间电荷由负离子平衡。

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