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首页> 外文期刊>Fusion Science and Technology >DEVELOPMENT OF AN RF-ION SOURCE FOR PLASMA DIAGNOSTIC IN THE MAGNETIC FUSION DEVICES WITH LONG PULSE DURATION
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DEVELOPMENT OF AN RF-ION SOURCE FOR PLASMA DIAGNOSTIC IN THE MAGNETIC FUSION DEVICES WITH LONG PULSE DURATION

机译:长脉冲持续时间的磁融合设备中用于等离子体诊断的RF离子源的开发

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摘要

A diagnostic neutral beam injector based on radio-frequency ion source has been developed at BINP, Novosibirsk for plasma diagnostics in magnetic fusion devices including magnetic mirrors with pulse duration up to several seconds, plasma density up to 10~(20) m~(-3) and plasma radius ~0.5m. It was observed that properties of the ceramic plasma box considerably changed after several hours of integrated operational time. After that, the proton specie in the beam essentially decreases. Eventually the proton component of the beam decreases approximately by 10% (from 60% down to 50% by current). This problem can be resolved by protection of the ceramic wall by a Faraday shield. We investigated the shield, which was made of aluminium tube with longitudinal slits and with a diameter close to that of the inner ceramic wall of the plasma box. This paper discusses the results of the beam composition measurements after installation of the Faraday shield.
机译:新西伯利亚BINP公司开发了一种基于射频离子源的诊断中性束注入器,用于电磁融合设备中的等离子体诊断,包括脉冲持续时间长达数秒,等离子体密度高达10〜(20)m〜(- 3)等离子体半径〜0.5m。可以观察到,经过几个小时的综合运行时间,陶瓷等离子箱的性能发生了显着变化。此后,束中的质子种类基本上减少。最终,束的质子分量大约减少10%(从电流的60%下降到50%)。这个问题可以通过用法拉第屏蔽罩保护陶瓷壁来解决。我们研究了防护罩,该防护罩由具有纵向狭缝的铝管制成,其直径接近等离子箱的内陶瓷壁的直径。本文讨论了安装法拉第护罩后的光束成分测量结果。

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