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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Structure of metallic nanowires and nanoclusters formed in superfluid helium
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Structure of metallic nanowires and nanoclusters formed in superfluid helium

机译:超流氦中形成的金属纳米线和纳米团簇的结构

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It is shown that metallic nanowires (5-8 nm in diameter) that form during laser ablation of Ni, Pb, In, and Sn targets embedded in HeII contain extended single-crystal segments, while spherical clusters (about 2 μm in diameter) that form under these conditions have a regular shape and an atomically smooth surface. Such structures are explained by melting of metal ablation products under their coalescence in HeII. The short-term action of a low-intensity beam of electrons with an energy of 200 keV initiates the explosion in metallic spheres preserved in the vacuum chamber of a transmission electron microscope, which is accompanied with the formation of thousands of clusters with a diameter of a few nanometers. This effect is due to metastability of internal mechanical stresses produced upon sharp cooling of molten spheres by liquid helium. A mechanism of condensation of atoms and nanoparticles in quantized vortices of superfluid helium is proposed.
机译:结果表明,激光烧蚀嵌入HeII中的Ni,Pb,In和Sn靶材时形成的金属纳米线(直径5-8 nm)包含扩展的单晶段,而球形簇(直径约2μm)在这些条件下的晶型具有规则的形状和原子光滑的表面。通过在HeII中聚结下金属烧蚀产物的熔化来解释这种结构。能量为200 keV的低强度电子束的短期作用引发了透射电子显微镜真空室中保存的金属球体的爆炸,并伴随着成千上万个直径为的簇的形成。几纳米。这种效果是由于液态氦对熔融球体进行急剧冷却时产生的内部机械应力的亚稳定性所致。提出了原子和纳米粒子在超流氦量化涡旋中的缩合机理。

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