论文标题

离子源蜘蛛中的负离子密度在CS自由条件下

Negative ion density in the ion source SPIDER in Cs free conditions

论文作者

Barbisan, M., Agnello, R., Casati, G., Pasqualotto, R., Poggi, C., Sartori, E., Spolaore, M., Serianni, G.

论文摘要

蜘蛛实验在Consorzio RFX的中性束测试设施Padua的中性束测试设施中进行,其原型是ITER中性束注射器的H-/D-ION源的原型。从源中提取的离子电流的最大化和共提取电子的量最小化是完成的最相关目标之一。腔圆环光谱诊断测量接近等离子网格(离子加速度系统的等离子网格)的负离子密度,因此要识别可提取可提取的负离子的量源操作参数。在这项研究中,蜘蛛是在无CS条件下在氢和氘中运行的,因此负离子主要是由血浆体积中的反应产生的。这项工作表明了磁滤场和偏置电流如何限制共摘取电子的量,影响可用于提取的负离子的密度。结果表明,加速系统前面的磁过滤场应设置在约1.6吨之间,条件可最大化可用的负离子的密度,约3.2吨,条件,使电子电流与离子电流的比率最小化。当血浆网格及其周围偏置板与源体呈阳性偏置时,总离子密度也最大化,总电流在范围0 a÷100 A中。本文还显示,在无CS的条件下,在无CS的条件下,加速度系统中的电场在源中的电场可能会影响源源的负离子密度,接近plasma grid apers。

The SPIDER experiment, operated at the Neutral Beam Test Facility of Consorzio RFX, Padua, hosts the prototype of the H-/D- ion source for the ITER neutral beam injectors. The maximization of the ion current extracted from the source and the minimization of the amount of co-extracted electrons are among the most relevant targets to accomplish. The Cavity Ring-Down Spectroscopy diagnostic measures the negative ion density in the source close to the plasma grid (the plasma-facing grid of the ion acceleration system), so to identify the source operational parameters that maximize the amount of negative ions which can be extracted. In this study SPIDER was operated in hydrogen and deuterium in Cs-free conditions, therefore negative ions were mostly produced by reactions in the plasma volume. This work shows how the magnetic filter field and the bias currents, present in SPIDER to limit the amount of co-extracted electrons, affect the density of negative ions available for extraction. The results indicate that the magnetic filter field in front of the acceleration system should be set between about 1.6 mT, condition that maximizes the density of available negative ions, and about 3.2 mT, condition that minimizes the ratio of electron current to ion current. The negative ion density also resulted to be maximized when the plasma grid and its surrounding bias plate was positively biased against the source body with a total current in the range 0 A÷100 A. The paper shows also how much, in Cs-free conditions, the electric fields in the acceleration system can affect the density of negative ions in the source, close to the plasma grid apertures.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源