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Ripple topography and roughness evolution on surface of polycrystalline gold and silver thin films under low energy Ar-ion beam sputtering

机译:低能氩离子束溅射下多晶金和银薄膜表面的波纹形貌和粗糙度演变

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摘要

Metallic thin films of gold and silver have been sputtered by argon ions at low energy in the framework of technological applications including nanostructuring and ion beam figuring. Ion beam sputtering at high angle of incidence usually leads to spontaneous formation of periodic structures on the target surface, commonly referred as ripples. In this work, ripples dimensions and roughness evolution have been studied as function of the angle of incidence (0-80°), ion beam energy (400-1200 eV) and ion flux. The ripple wave vector direction was always observed perpendicular to the ion beam direction for both materials, in agreement with theoretical predictions for the investigated experimental conditions. The decrease of ripple wavelength with energy and ion flux shows the dominance of thermal diffusion as smoothing mechanism. Moreover, three regimes for roughness evolution on gold and silver films have been observed as function of the angle of incidence for sputtering at 650 eV, with a minimum roughness achieved around 45° and 60° for gold and silver, respectively.
机译:在包括纳米结构和离子束计算在内的技术应用框架内,低能量的氩离子已溅射出金和银的金属薄膜。高入射角的离子束溅射通常会导致在目标表面上自发形成周期性结构,通常称为波纹。在这项工作中,已研究了波纹尺寸和粗糙度演变与入射角(0-80°),离子束能量(400-1200 eV)和离子通量的关系。对于两种材料,始终观察到垂直于离子束方向的波纹波矢量方向,这与所研究实验条件的理论预测相符。波纹波长随能量和离子通量的减小显示出热扩散占主导地位作为平滑机制。此外,已观察到金和银膜上的三个粗糙度演化机制,与在650 eV溅射的入射角有关,金和银的最小粗糙度分别约为45°和60°。

著录项

  • 来源
    《Applied Surface Science》 |2012年第19期|p.7717-7725|共9页
  • 作者单位

    Centre Spatial de Liige, Universite de Liege, Avenue du Pre-Aily, Liege Science Park, 4031 Angleur, Belgium;

    Centre Spatial de Liige, Universite de Liege, Avenue du Pre-Aily, Liege Science Park, 4031 Angleur, Belgium,Ecole Europeenne de Chimie, Polymeres et Materiaux (ECPM), Universite de Strasbourg, 25 rue Becquerel, 67087 Strasbourg, France;

    Centre Spatial de Liige, Universite de Liege, Avenue du Pre-Aily, Liege Science Park, 4031 Angleur, Belgium;

    Centre Spatial de Liige, Universite de Liege, Avenue du Pre-Aily, Liege Science Park, 4031 Angleur, Belgium;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sputtering; ripples; roughness; topography; metallic thin films; ion beam figuring;

    机译:溅射涟漪粗糙度地形;金属薄膜;离子束计算;
  • 入库时间 2022-08-18 03:06:44

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