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Role of the temperature dynamics in formation of nanopatterns upon single femtosecond laser pulses on gold

机译:在金的单一飞秒激光脉冲中形成纳米图的作用

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摘要

In this paper we investigate the role of two-temperature heating dynamics for formation of periodic structures on metal surfaces exposed to single ultrashort laser pulses. The results of two-temperature model (TTM) twodimensional simulations are presented on the irradiation of gold by a single 800-nm femtosecond laser pulse the intensity of which is modulated in order to reproduce an initial electron temperature perturbation, which can arise from incoming and scattered surface wave interference. The growing (unstable) modes of the lattice temperature distribution along the surface may be significant in the laser induced periodic surface structures formation. After the end of the laser pulse and before the complete coupling between lattice and electrons occurs, the evolution of the amplitude of the subsequent modulation in the lattice temperature reveals different tendencies depending on the spatial period of the initial modulation. This instabilitylike behavior is shown to arise due to the perturbation of the electronic temperature which relaxes slower for bigger spatial periods and thus imparts more significant modulations to the lattice temperature. Small spatial periods of the order of 100 nm and smaller experience stabilization and fast decay from the more efficient lateral heat diffusion which facilitates the relaxation of the electronic temperature amplitude due to in-depth diffusion. An analytical instability analysis of a simplified version of the TTM set of equations supports the lattice temperature modulation behavior obtained in the simulations and reveals that in-depth diffusion length is a determining parameter in the dispersion relation of unstable modes. Finally, it is discussed how the change in optical properties can intensify the modulation-related effects.
机译:在本文中,我们调查两温度加热动力学上形成金属周期性结构的作用面暴露于单超短激光脉冲。两温度模型的结果(TTM)的二维模拟呈现的金照射上由单个800nm的飞秒激光脉冲,该脉冲的以再现的初始电子温度扰动被调制的强度,它可以从输入的出现和散面波干扰。沿表面的晶格温度分布的生长(不稳定)模式可以是周期性的诱导表面结构形成的激光显著。激光脉冲的结束之后和晶格和电子之间的完整的耦合发生之前,在晶格温度随后调制的幅度的演变揭示取决于初始调制的空间周期不同的倾向。此instabilitylike行为被示出为出现由于这放松了更大的空间周期,从而更面授调制显著于晶格温度越慢电子温度的扰动。由有利于电子温度振幅的松弛由于深入扩散更有效的横向热扩散为100nm和更小的经验稳定和快速衰减的顺序的小的空间周期。的TTM组方程的简化形式的分析的不稳定性分析支持在模拟得到的晶格温度调制行为并揭示了深入扩散长度是不稳定的模式的色散关系确定参数。最后,在所讨论的光学特性的变化如何能够加大调制相关的影响。

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  • 来源
    《Physical review, B》 |2017年第5期|共12页
  • 作者单位

    Ruhr Univ Bochum Chair Appl Laser Technol Univ Str 150 D-44801 Bochum Germany;

    Inst Phys AS CR HiLASE Ctr Radnici 828 Dolni Brezany 25241 Czech Republic;

    Westfalische Wilhelms Univ Munster Inst Theoret Phys Wilhelm Klemm Str 9 D-48149 Munster Germany;

    Inst Phys AS CR HiLASE Ctr Radnici 828 Dolni Brezany 25241 Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
  • 关键词

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