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CF-LIBS quantification and depth profile analysis of Be coating mixed layers

机译:CF-libs量化和深度剖面分析混合层

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摘要

A remote LIBS system is being considered as an analysis tool in ITER for monitoring the erosion and fuel retention in the first wall. This necessitates further investigation of the performance of LIBS for thick co-deposited layers consisting of ITER-relevant materials. The main goal of this work is determining the fuel content of the samples and D depth profile by LIBS and to compare the results with those obtained by other methods. The studied samples were Be-based mixed coatings on W substrates, containing D and in some cases C, O, or both. These impurities are relevant not only for ITER, but also for other fusion devices, such as JET-ILW. The laser ablation was performed at 10?mbar Ar pressure using a 5?ns pulse Nd:YAG laser at 1064?nm. Suitable Be and Ar spectral lines were employed for the evaluation of the electron temperature of the plasma using multi-elemental Saha-Boltzmann (MESB) plots. The electron density was obtained from the Stark broadening of the Dαand Hαspectral lines following deconvolution. The average elemental content of each coating was then obtained by calibration-free LIBS (CF-LIBS) and are in agreement with other techniques (TOF–ERDA, IBA).
机译:远程LIBS系统被视为ITER中的分析工具,用于监控第一墙中的侵蚀和燃料保留。这需要进一步调查Libs对由浸入相关材料组成的厚共沉积层的性能。这项工作的主要目的是通过LIB来确定样品和D深度谱的燃料含量,并将结果与​​其他方法获得的结果进行比较。研究的样品是基于W基质的混合涂层,含有D和一些情况C,O或两者。这些杂质不仅适用于ITER,而且还用于其他融合装置,例如Jet-ILW。使用5Ω·ns脉冲Nd:YAG激光在1064Ω·NM处以10×MBAR AR压力进行激光烧蚀。使用合适的BE和AR光谱线来使用多元素Saha-Boltzmann(MESB)图来评估等离子体的电子温度。电子密度从Dα和Hα光谱线之后的Dα和Hα分光线的缺陷扩展获得。然后通过校准的LIB(CF-LIB)获得每种涂层的平均元素含量,并与其他技术(TOF-ERDA,IBA)一致。

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