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首页> 外文期刊>Review of Scientific Instruments >Design of a beam emission spectroscopy diagnostic for negative ions radio frequency source SPIDER
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Design of a beam emission spectroscopy diagnostic for negative ions radio frequency source SPIDER

机译:负离子射频源SPIDER的束发射光谱诊断设计

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摘要

A facility will be built in Padova (Italy) to develop, commission, and optimize the neutral beam injection system for ITER. The full scale prototype negative ion radio frequency source SPIDER, featuring up to 100 kV acceleration voltage, includes a full set of diagnostics, required for safe operation and to measure and optimize the beam performance. Among them, beam emission spectroscopy (BES) will be used to measure the line integrated beam uniformity, divergence, and neutralization losses inside the accelerator (stripping losses). In the absence of the neutralization stage, SPIDER beam is mainly composed by H- or D- particles, according to the source filling gas. The capability of a spectroscopic diagnostic of an H- (D-) beam relies on the interaction of the beam particles with the background gas particles. The BES diagnostic will be able to acquire the Hα (Dα) spectrum from up to 40 lines of sight. The system is capable to resolve stripping losses down to 2 keV and to measure beam divergence with an accuracy of about 10%. The design of this diagnostic is reported, with discussion of the layout and its components, together with simulations of the expected performance.
机译:将在意大利帕多瓦建立一座设施,以开发,调试和优化用于ITER的中性射束注入系统。全面的原型负离子射频源SPIDER,具有高达100 kV的加速电压,包括全套诊断,对于安全操作以及测量和优化射束性能都是必需的。其中,束发射光谱法(BES)将用于测量加速器内部的线积分束均匀度,发散度和中和损耗(剥离损耗)。在没有中和阶段的情况下,根据源填充气体,SPIDER光束主要由H -或D -颗粒组成。 H -(D -)束的光谱诊断能力取决于束粒子与背景气体粒子的相互作用。 BES诊断程序将能够从多达40条视线中获取Hα(Dα)光谱。该系统能够解决低至2 keV的剥离损耗,并能够以约10%的精度测量光束发散度。报告了该诊断程序的设计,并讨论了布局及其组成部分以及对预期性能的仿真。

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