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Ion-beam-induced embedded nanostructures and nanoscale mixing

机译:离子束诱导的嵌入式纳米结构和纳米级混合

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摘要

Megaelectron volts ion-induced effects for discontinuous gold nanoislands and for continuous gold films on silicon substrate have been studied. Irradiation was carried out with 1.5 MeV Au2+ ions at room temperature to various fluences. Cross-sectional transmission electron microscopy and Rutherford backscattering spectrometry are used to study the ion-beam mixing in Au/Si systems. At a fluence of 1x10(14) ions cm(-2), a material push-in effect and a metastable Au-Si phase formation have been observed for Au nanoislands, while no push in or mixing has been observed for the case of continuous films. The mixed phase of Au-Si system is found to be crystalline in nature. The material push- in and ion-beam mixing effects that are observed in case of nanoislands appear to be due to combined effect of capillary driving force, ion-induced viscous flow, and ion-induced energy spike effects. (C) 2004 American Institute of Physics.
机译:研究了不连续金纳米岛和硅衬底上连续金膜的兆电子伏特离子诱导效应。在室温下用1.5 MeV Au2 +离子进行辐照以达到不同的通量。截面透射电子显微镜和卢瑟福背散射光谱法用于研究金/硅系统中的离子束混合。在1x10(14)离子cm(-2)的注量下,已观察到Au纳米岛的材料推入效应和亚稳态Au-Si相形成,而对于连续的情况则未观察到推入或混合电影。发现金-硅系统的混合相本质上是晶体。在纳米岛的情况下观察到的材料推入和离子束混合效应似乎是由于毛细管驱动力,离子诱导的粘性流和离子诱导的能量尖峰效应共同作用的结果。 (C)2004美国物理研究所。

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