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Enhanced growth of large-scale nanostructures with metallic ion precipitation in helium plasmas

机译:氦等离子体中金属离子沉淀促进大规模纳米结构的生长

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摘要

Helium plasma irradiation on metal surfaces leads to the formation of metallic fuzzy nanostructures accompanied by the growth of helium bubbles in metals. The mechanism of the growth process, its impact for fusion devices, and potential application have been explored. Here we show enhanced growth of large-scale fuzz by precipitating additional metallic particles during helium plasma irradiation. The growth rate of the fuzzy structures became orders of magnitude greater than conventional fuzz growth; in an hour of irradiation, 1 mm-thick visible tungsten and molybdenum fuzzy fur structures covered a tungsten metal substrate. Additional precipitation of metallic ions breaks the bottleneck diffusion process; moreover, further acceleration in the growth rate could have occurred if the electric sheath shape was influenced by the grown structure and the electric field that formed around the structure started collecting ions.
机译:金属表面上的氦等离子体照射导致金属模糊纳米结构的形成,伴随着金属中氦气泡的生长。已经研究了生长过程的机理,其对融合装置的影响以及潜在的应用。在这里,我们显示了通过在氦等离子体辐照过程中析出其他金属颗粒而增强了大型毛绒的生长。模糊结构的增长率比常规的绒毛增长大几个数量级。在一个小时的照射中,厚度为1μmm的可见钨和模糊的毛状毛皮结构覆盖了钨金属基底。金属离子的额外沉淀打破了瓶颈扩散过程。此外,如果电鞘的形状受到生长的结构的影响,并且围绕该结构形成的电场开始收集离子,则可能会进一步加快生长速度。

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