Surface and bulk structuring of materials by ripples with long and short laser pulses: Recent advances

被引:293
作者
Buividas, Riacardas [1 ,2 ]
Mikutis, Mindaugas [3 ,4 ]
Juodkazis, Saulius [1 ,2 ,5 ]
机构
[1] Swinburne Univ Technol, Fac Sci Engn & Technol, Ctr Microphoton, Hawthorn, Vic 3122, Australia
[2] ANFF, Melbourne Ctr Nanofabricat, Clayton, Vic 3168, Australia
[3] Altechna R&D, LT-08412 Vilnius, Lithuania
[4] Vilnius Univ, Laser Res Ctr, LT-10223 Vilnius, Lithuania
[5] Semicond Phys Dept, LT-10222 Vilnius, Lithuania
基金
澳大利亚研究理事会;
关键词
Ripples; Ablation; Self-organization; Sensors; Micro-optical devices; Micro-fluidics; ORGANIZED PLANAR NANOCRACKS; ENHANCED RAMAN-SCATTERING; X-RAY GENERATION; FEMTOSECOND-LASER; FUSED-SILICA; NANOGRATING FORMATION; STAINLESS-STEEL; NANOSTRUCTURE FORMATION; SUBWAVELENGTH RIPPLES; OPTICAL-PROPERTIES;
D O I
10.1016/j.pquantelec.2014.03.002
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
080906 [电磁信息功能材料与结构]; 082806 [农业信息与电气工程];
摘要
Ripples are formed on the surface of solid materials after interaction with laser pulses of high intensity/itradiance. When ultra-short sub-1 ps laser pulses are used, the observed morphology of ripples on surfaces becomes much more complex as compared with ripples formed by long laser pulses. Uniquely for the short laser pulses, ripples can be formed in the bulk. A better understanding of the fundamentals of light-matter interaction in ripples formation is strongly required. Experimentally observed ripples and dependence of their parameters on laser fabrication conditions and material properties are summarized first. Then, a critical review of relevant ripple formation mechanisms is presented, discussed, and formation conjectures are presented. It is shown that formation of plasma at sub-critical or critical densities (i.e., solid state or breakdown plasmas) on the surface and in the bulk specific to the high-intensity ultra-short laser pulses has to be considered to account for the experimental observations. Surface and bulk ripples formed on/in dielectrics can be explained by the same model where electron-hole (solid state) plasma is formed at the very threshold of ripples formation. Ripple patterns have a strong application potential from sensing to light harvesting and (photo)catalysis mainly due to nanoscale features and self-replication of pattern over large macroscopic areas. Several emerging applications are shown. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:119 / 156
页数:38
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