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Design and Fabrication of Dual-Scale Broadband Antireflective Structures on Metal Surfaces by Using Nanosecond and Femtosecond Lasers

机译:纳秒和飞秒激光在金属表面双尺度宽带减反射结构的设计与制作

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摘要

Antireflective surfaces, with their great potential applications, have attracted tremendous attention and have been the subject of extensive research in recent years. However, due to the significant optical impedance mismatch between a metal surface and free space, it is still a challenging issue to realize ultralow reflectance on a metal surface. To address this issue, we propose a two-step strategy for constructing antireflective structures on a Ti-6Al-4V (TC4) surface using nanosecond and femtosecond pulsed lasers in combination. By controlling the parameters of the nanosecond laser, microgrooves are first scratched on the TC4 surface to reduce the interface reflection. Then, the femtosecond laser is focused onto the sample surface with orthogonal scanning to induce deep air holes and nanoscale structures, which effectively enhances the broadband absorption. The antireflection mechanism of the dual-scale structures is discussed regarding morphological characterization and hemispherical reflectance measurements. Finally, the modified sample surface covered with micro-nano hybrid structures is characterized by an average reflectance of 3.1% over the wavelengths ranging from 250 nm to 2250 nm.
机译:防反射表面及其巨大的潜在应用引起了极大的关注,并且近年来已成为广泛研究的主题。然而,由于金属表面和自由空间之间的显着光学阻抗失配,在金属表面上实现超低反射率仍然是一个挑战性的问题。为了解决这个问题,我们提出了一种结合纳秒和飞秒脉冲激光在Ti-6Al-4V(TC4)表面上构造抗反射结构的两步策略。通过控制纳秒激光的参数,首先在TC4表面上刻划微槽以减少界面反射。然后,通过正交扫描将飞秒激光聚焦到样品表面上,以产生深层的气孔和纳米级结构,从而有效地提高了宽带吸收率。关于形态表征和半球反射率测量,讨论了双尺度结构的抗反射机理。最后,覆盖有微纳米杂化结构的改性样品表面的特征是,在250 nm至2250 nm的波长范围内,平均反射率为3.1%。

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