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Thermo-chemical microstructuring of thin metal films using multi-beam interference by short (nano- & picosecond) laser pulses

机译:使用短(纳秒和皮秒)激光脉冲的多光束干涉对金属薄膜进行热化学微结构化

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摘要

Interference of laser beams with high pulse energy opens an opportunity of direct oxidation of surfaces over large areas. It is important to confirm that the single ultrashort laser pulse irradiation is able to create the protective oxide layer on chromium films. Here, we report an approach of hybrid thermo-chemical treatment of thin chromium films irradiated by laser beam interference utilising picosecond and nanosecond laser pulses combined with the subsequent chemical etching. The array of periodical structures with a period of 1.5-3.5 pm and array size of 300 x 300 mu m(2) were created on the chromium film. Theoretical modelling combining the laser heating of a thin film by the multi-beam interference and growth of the oxide layer is discussed. Confirmed thermo-chemical microstructuring of thin metal films using multi-beam interference opens the opportunities in fabrication of low-cost and high-quality diffractive optical elements. (C) 2017 Elsevier B.V. All rights reserved.
机译:高脉冲能量的激光束干扰为直接在大面积表面氧化提供了机会。重要的是要确认单次超短激光脉冲辐照能够在铬膜上形成保护性氧化层。在这里,我们报告了一种混合热化学方法,利用皮秒和纳秒激光脉冲结合随后的化学蚀刻,对铬薄膜进行激光束干扰辐照的混合热化学处理。在铬膜上创建了周期为1.5-3.5 pm的周期性结构阵列,阵列尺寸为300 x 300μm(2)。讨论了通过多光束干涉和氧化层生长将薄膜激光加热结合起来的理论模型。使用多光束干涉技术对金属薄膜进行热化学证实的微结构化,为制造低成本和高质量衍射光学元件提供了机会。 (C)2017 Elsevier B.V.保留所有权利。

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