Höhm Sandra, Rosenfeld Arkadi, Krüger Jörg, Bonse Jörn
Opt Express. 2015 Oct 5;23(20):25959-71. doi: 10.1364/OE.23.025959.
Single- and two-color double-fs-pulse experiments were performed on titanium to study the dynamics of the formation of laser-induced periodic surface structures (LIPSS). A Mach-Zehnder inter-ferometer generated polarization controlled (parallel or cross-polarized) double-pulse sequences in two configurations - either at 800 nm only, or at 400 and 800 nm wavelengths. The inter-pulse delays of the individual 50-fs pulses ranged up to some tens of picoseconds. Multiple of these single- or two-color double-fs-pulse sequences were collinearly focused by a spherical mirror to the sample surface. In both experimental configurations, the peak fluence of each individual pulse was kept below its respective ablation threshold and only the joint action of both pulses lead to the formation of LIPSS. Their resulting characteristics were analyzed by scanning electron microscopy and the periods were quantified by Fourier analyses. The LIPSS periods along with the orientation allow a clear identification of the pulse which dominates the energy coupling to the material. A plasmonic model successfully explains the delay-dependence of the LIPSS on titanium and confirms the importance of the ultrafast energy deposition stage for LIPSS formation.
在钛上进行了单双色双飞秒脉冲实验,以研究激光诱导周期性表面结构(LIPSS)的形成动力学。马赫-曾德尔干涉仪在两种配置下产生偏振控制(平行或交叉偏振)双脉冲序列——要么仅在800nm,要么在400nm和800nm波长。各个50飞秒脉冲的脉冲间延迟范围高达几十皮秒。这些单或双色双飞秒脉冲序列中的多个通过球面镜共线聚焦到样品表面。在两种实验配置中,每个单独脉冲的峰值通量都保持在其各自的烧蚀阈值以下,只有两个脉冲的联合作用才导致LIPSS的形成。通过扫描电子显微镜分析了它们的最终特性,并通过傅里叶分析对周期进行了量化。LIPSS周期以及取向能够清晰识别主导与材料能量耦合的脉冲。一个等离子体模型成功解释了LIPSS对钛的延迟依赖性,并证实了超快能量沉积阶段对LIPSS形成的重要性。