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新型表面辅助体负压氢离子源的研制。

Development of a novel surface assisted volume negative hydrogen ion source.

机构信息

Centre of Plasma Physics-IPR, Nazirakhat, Sonapur-782 402, Kamrup(M), Assam, India.

Institute for Plasma Research, HBNI, Bhat, Gandhinagar, 382 428, India.

出版信息

Sci Rep. 2017 Sep 11;7(1):11078. doi: 10.1038/s41598-017-10685-4.

Abstract

H ion based neutral beam injector is a critical heating and current drive system in a fusion reactor. However, the present H ion source configuration has limitations in terms of production, extraction, cesium (Cs) inventory and management. To overcome these limitations, a proof-of-principle experiment based on a novel concept regarding surface assisted volume H ions production by sprinkling Cs coated tungsten (W) dust grains (low work function surface) into a hydrogen plasma is carried out. Four different diagnostics have been used to validate the concept. The H ion fraction is estimated from (a) Langmuir probe diagnostic, (b) phase velocity of ion acoustic waves, (c) dust current and confirmed by the measurement of (d) Balmer line ratio. The measured H ion fraction with respect to the plasma density for different discharge conditions varies from ~0.2 to 0.3 in presence of Cs coated W dust particles. The experimental results show good agreement with the theoretical estimation.

摘要

基于氢离子的中性束注入器是聚变反应堆中关键的加热和电流驱动系统。然而,目前的氢离子源在生产、引出、铯(Cs)库存和管理方面存在局限性。为了克服这些局限性,开展了一项基于表面辅助体积氢离子产生的新原理的原理验证实验,即将涂覆 Cs 的钨(W)粉尘颗粒(低功函数表面)撒入氢等离子体中。使用了四种不同的诊断方法来验证该概念。氢离子分数由(a)朗缪尔探针诊断、(b)离子声波的相速度、(c)尘埃电流来估计,并通过(d)巴尔末线比的测量来确认。在存在涂覆 Cs 的 W 尘埃颗粒的情况下,不同放电条件下相对于等离子体密度的氢离子分数约为 0.2 到 0.3。实验结果与理论估计吻合较好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/897c/5593904/a4bbb475719f/41598_2017_10685_Fig1_HTML.jpg

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