【24h】

Laser Cleaning of Nanoparticles From Solid Surfaces

机译:激光清洁固体表面的纳米颗粒

获取原文
获取原文并翻译 | 示例

摘要

The experimental analysis of dry laser cleaning efficiency is done for certified spherical particle (SiO_2, 5.0, 2.5, 1.0 and 0.5 μm) from different substrates (Si, Ge and NiP). The influence of different options (laser wavelength, incident angle, substrate properties, i.e. type of material, surface roughness, etc.) on the cleaning efficiency is presented in addition to commonly analyzed options (cleaning efficiency versus laser fluence and particle size). Found laser cleaning efficiency demonstrates a great sensitivity to some of these options (e.g. laser wavelength, angle of incidence, etc.). Partially these effects can be explained within the frame of the Mie theory of scattering. Other effects (e.g. influence of roughness) can be explained along the more complex line, related to examination of the problem "particle on the surface" beyond the Mie theory. 0.5 μm spherical silica particles were placed on Silicon (100) substrate. After laser irradiation with a 248 nm KrF excimer laser, hillocks with size of about 100 nm were obtained at the original position of the particles. Mechanism of the formation of the sub-wavelength structures were investigated and found to be the near-field optical resonance effect induced by particles on surface. Theoretical prediction of the near-field light intensity distribution was presented, which was in agreement with the experimental result.
机译:对来自不同基材(Si,Ge和NiP)的认证球形颗粒(SiO_2、5.0、2.5、1.0和0.5μm)进行了干激光清洁效率的实验分析。除了通常分析的选项(清洁效率与激光通量和粒径)之外,还介绍了不同选项(激光波长,入射角,基板特性,即材料的类型,表面粗糙度等)对清洁效率的影响。所发现的激光清洁效率表明对其中一些选项(例如激光波长,入射角等)具有很高的敏感性。这些影响可以部分地在米氏散射理论的框架内解释。其他影响(例如粗糙度的影响)可以沿着更复杂的路线来解释,这与对超出“米氏”理论的“表面上的颗粒”问题的检查有关。将0.5μm球形二氧化硅颗粒放置在Silicon(100)衬底上。用248 nm KrF准分子激光照射后,在颗粒的原始位置获得了约100 nm的小丘。研究了亚波长结构的形成机理,发现其是表面颗粒引起的近场光学共振效应。提出了近场光强分布的理论预测,与实验结果吻合。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号