论文标题
通过超短脉冲直接激光构图来调整亚微米的周期表面结构
Tailoring Sub-micrometer Periodic Surface Structures via Ultrashort Pulsed Direct Laser Interference Patterning
论文作者
论文摘要
具有超短激光脉冲(ULP)的直接激光干扰模式(DLIP)代表了一种精确而快速的技术,可在各种材料上生产量身定制的周期性亚微米结构。在这项工作中,提出了一种实验性和理论方法,以研究以前未开发的基本机制,用于在不锈钢上形成前所未有的激光诱导的地形图,并在与ULP合适的DLIP结合后,在不锈钢上形成。 DLIP的目的是通过定义消融区域来确定激光 - 物质相互作用的初始条件,而双ULP则用于控制自组装激光诱导的亚微微光计的重组,通过利用不同的吸收和激发水平与第一双脉冲造成的融合液体动力学的相互作用,通过利用不同的吸收和激发水平的相互作用。提出了多尺理模型,以将干扰周期,极化取向和入射脉冲的数量与诱导的形态相关联。特别强调电子激发,放松过程和流体动力学效应,这对于复杂形态的产生至关重要。预计结果将在联合DLIP和ULP条件下得出激光 - 物质相互作用的新知识,并为各种应用提供了复杂层次次级微米大小的结构的增强的制造能力。
Direct laser Interference Patterning (DLIP) with ultrashort laser pulses (ULP) represents a precise and fast technique to produce tailored periodic sub-micrometer structures on various materials. In this work, an experimental and theoretical approach is presented to investigate the previously unexplored fundamental mechanisms for the formation of unprecedented laser-induced topographies on stainless steel following proper combinations of DLIP with ULP. DLIP is aimed to determine the initial conditions of the laser-matter interaction by defining an ablated region while double ULP are used to control the reorganisation of the self-assembled laser induced sub-micrometer sized structures by exploiting the interplay of different absorption and excitation levels coupled with the melt hydrodynamics induced by the first of the double pulses. A multiscale physical model is presented to correlate the interference period, polarization orientation and number of incident pulses with the induced morphologies. Special emphasis is given to electron excitation, relaxation processes and hydrodynamical effects that are crucial to the production of complex morphologies. Results are expected to derive new knowledge of laser-matter interaction in combined DLIP and ULP conditions and enable enhanced fabrication capabilities of complex hierarchical sub-micrometer sized structures for a variety of applications.