Submicron periodic structures in metal oxide coating via laser ablation and thermal oxidation

IF 7.5 Q1 CHEMISTRY, PHYSICAL Applied Surface Science Advances Pub Date : 2024-11-20 DOI:10.1016/j.apsadv.2024.100660
Julianija Nikitina , Simonas Indrišiūnas , Tomas Tolenis , Mindaugas Andrulevicius , Lina Grineviciute
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Abstract

Nano- and micro-structuring of transparent glass for IR or visible spectrum applications is challenging due to low yield and slow processes, especially while maintaining high surface quality. The method proposed in this work involves the structuring and subsequent thermal oxidation of a thin metallic layer on a glass substrate. Annealing of the structured metal layer produces a transparent fully inorganic oxide surface with periodic patterns, avoiding the subtleties of glass structuring. A new method for the formation of sub-micrometer non-absorbing gratings with 750 nm periodicity is presented by direct laser interference patterning (DLIP) of thin tantalum layers on fused silica substrates followed by thermal oxidation by annealing. This method aims to improve the field of laser optics by providing a scalable and efficient method for the creation of precise metal-oxide photonic structures.
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通过激光烧蚀和热氧化在金属氧化物涂层中形成亚微米周期性结构
由于产量低、工艺慢,特别是在保持高表面质量的同时,对用于红外或可见光谱应用的透明玻璃进行纳米和微结构加工具有挑战性。本研究提出的方法是在玻璃基板上对金属薄层进行结构化和随后的热氧化处理。对结构化金属层进行退火处理,可产生具有周期性图案的透明全无机氧化物表面,避免了玻璃结构化的微妙之处。通过在熔融石英基底上直接激光干涉图案化(DLIP)钽薄层,然后通过退火热氧化形成具有750纳米周期性的亚微米级非吸收光栅的新方法。这种方法旨在改进激光光学领域,为创建精确的金属氧化物光子结构提供一种可扩展的高效方法。
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来源期刊
CiteScore
8.10
自引率
1.60%
发文量
128
审稿时长
66 days
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