首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >The effect of carbon impurities on molybdenum surface morphology evolution under high-flux low-energy helium ion irradiation
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The effect of carbon impurities on molybdenum surface morphology evolution under high-flux low-energy helium ion irradiation

机译:高通量低能氦离子辐照下碳杂质对钼表面形貌演变的影响

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We report on the role of carbon (C) impurities, in molybdenum (Mo) fuzz evolutions on Mo surface during 100 eV He+ ion irradiations. In this study we considered 0.01, 0.05, and 0.5% C+ ion impurities in He+ ion irradiations. For introducing such tiny C+ ion impurities, gas mixtures of He and CH4 have been chosen in following ratios; 99.95: 0.05, 99.75: 0.25, and 97.5: 2.5. Apart from these three cases, two additional cases, 100% He+ ion (for Mo fuzz growth due to only He+ ions) and 100% H+ ion (for confirming the significance of tiny 0.04-2.0% H+ ions in terms of Mo fuzz evolutions on Mo surface, if any), have also been considered. Ion energy (100 eV), ion fluence (2.6 x 10(24) ions m(-2)), and target temperature (923 K) were kept constant for each experiment and their selections were based on our previous studies [1,2]. Our study shows homogeneously populated and highly dense Mo fuzz evolutions on entire Mo surface for 100% He+ ion irradiation case. Enhancement of C+ ion impurities in He+ ions causes a sequential reduction in Mo fuzz evolutions, leading to almost complete prevention of Mo fuzz evolutions for 0.5% C+ ion impurity concentrations. Additionally, no fuzz formation for 100% H+ ion irradiation at all, were seen (apart from some tiny nano- structuring, in very limited regions). This indicates that there is no significant role of H+ ions in Mo fuzz evolutions (at least for such tiny amount, 0.04-2.0% H+ ions). The study is significant to understand the behavior of potential high- Z plasma facing components (PFCs), in the, presence of tiny amount of C impurities, for nuclear fusion relevant applications. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们报告了碳(C)杂质在100 eV He +离子辐照下钼表面上的钼(Mo)绒毛演变中的作用。在这项研究中,我们考虑了He +离子辐照中0.01%,0.05%和0.5%的C +离子杂质。为了引入这种微小的C +离子杂质,已按以下比例选择了He和CH4的气体混合物。 99.95:0.05、99.75:0.25和97.5:2.5。除了这三种情况外,还有另外两种情况,100%He +离子(仅由于He +离子使Mo模糊增长)和100%H +离子(用于确认微小的0.04-2.0%H +离子对Mo演化的影响) Mo表面,如果有的话)也已被考虑。每个实验的离子能量(100 eV),离子通量(2.6 x 10(24)离子m(-2))和目标温度(923 K)保持恒定,其选择基于我们先前的研究[1,2 ]。我们的研究表明,在100%He +离子辐照的情况下,整个Mo表面上均匀分布且高密度的Mo绒毛演变。 He +离子中C +离子杂质的增加会导致Mo模糊演变的顺序减少,从而导致在0.5%C +离子杂质浓度下几乎完全防止Mo模糊演变。此外,完全没有观察到100%H +离子辐照的起毛现象(除了一些微小的纳米结构,在非常有限的区域内)。这表明H +离子在Mo模糊演化中没有显著作用(至少对于如此少量的H +离子为0.04-2.0%)。这项研究对于了解在核聚变相关应用中存在少量C杂质的情况下潜在的高Z等离子体面临组件(PFC)的行为具有重要意义。 (C)2016 Elsevier B.V.保留所有权利。

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