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Atomistic modeling of femtosecond laser-induced melting and atomic mixing in Au film - Cu substrate system

机译:飞秒激光诱导金膜-铜衬底系统中熔化和原子混合的原子建模。

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摘要

The mechanisms of femtosecond laser-induced transient melting and atomic mixing in a target composed of a 30 nm Au film deposited on a bulk Cu substrate are investigated in a series of atomistic simulations. The relative strength and the electron temperature dependence of the electron-phonon coupling of the metals composing the layered target are identified as major factors affecting the initial energy redistribution and the location of the region(s) undergoing transient melting and resolidification. The higher strength of the electron-phonon coupling in Cu, as compared to Au, results in a preferential sub-surface heating and melting of the Cu substrate, while the overlaying Au film largely retains its original crystalline structure. The large difference in the atomic mobility in the transiently melted and crystalline regions of the target makes it possible to connect the final distributions of the components in the resolidified targets to the history of the laser-induced melting process, thus allowing for experimental verification of the computational predictions.
机译:在一系列原子模拟中研究了飞秒激光诱导的瞬态熔化和原子混合的机理,该目标由沉积在块状Cu衬底上的30 nm Au膜组成。构成层状靶的金属的电子-声子耦合的相对强度和电子温度依赖性被认为是影响初始能量重新分布和经历瞬时熔融和再凝固的区域的位置的主要因素。与Au相比,Cu中电子-声子耦合的更高强度导致Cu衬底优先进行次表面加热和熔化,而覆盖的Au膜则很大程度上保留了其原始的晶体结构。在靶的瞬时熔化和结晶区域中原子迁移率的巨大差异使得将重新凝固的靶中组分的最终分布与激光诱导的熔化过程的历史联系起来成为可能,从而可以对靶材进行实验验证。计算预测。

著录项

  • 来源
    《Applied Surface Science》 |2009年第24期|9605-9612|共8页
  • 作者单位

    Department of Materials Science and Engineering, University of Virginia, 395 McCormick Road, Charlottesville, VA 22904-4745, United States;

    Department of Materials Science and Engineering, University of Virginia, 395 McCormick Road, Charlottesville, VA 22904-4745, United States;

    Department of Materials Science and Engineering, University of Virginia, 395 McCormick Road, Charlottesville, VA 22904-4745, United States;

    ISAS - Institute for Analytical Sciences, Department of Material Analysis Bunsen-Kirchhoff-Str. 11, 44139 Dortmund, Germany;

    ISAS - Institute for Analytical Sciences, Department of Material Analysis Bunsen-Kirchhoff-Str. 11, 44139 Dortmund, Germany;

    ISAS - Institute for Analytical Sciences, Department of Material Analysis Bunsen-Kirchhoff-Str. 11, 44139 Dortmund, Germany;

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

    atomic mixing; electron-phonon coupling; laser melting; molecular dynamics; laser alloying;

    机译:原子混合电子-声子耦合;激光熔化分子动力学激光合金化;
  • 入库时间 2022-08-18 03:07:53

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