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Formation of Subwavelength Periodic Triangular Arrays on Tungsten through Double-Pulsed Femtosecond Laser Irradiation

机译:双脉冲飞秒激光辐照在钨上形成亚波长周期三角阵列

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摘要

We present a mask-free strategy for fabricating two-dimensional subwavelength periodic triangular arrays on tungsten, by focusing two orthogonally polarized and temporally delayed femtosecond laser beams using a cylindrical lens. In stark contrast to the commonly observed structures of either a single ablation spot or a one-dimensional grating, we obtained highly uniform periodic triangular arrays on the laser-exposed surface, with three equilateral sides each of 480 nm in length and about 100 nm in modulation depth. The triangular features varied with both the laser energy and the scanning speed. We found that the optical reflectivity of such a surface reduces significantly within the spectral range of 700–2500 nm. The triangular structure morphology can also be controlled by varying the time delay between the two laser beams.
机译:通过使用圆柱透镜聚焦两个正交偏振且时间延迟的飞秒激光束,我们提出了一种在钨丝上制作二维亚波长周期性三角形阵列的无掩模策略。与通常观察到的单个烧蚀点或一维光栅的结构形成鲜明对比的是,我们在激光曝光的表面上获得了高度均匀的周期性三角形阵列,三个等边长分别为480 nm和约100 nm。调制深度。三角形特征随激光能量和扫描速度而变化。我们发现,这种表面的光反射率在700–2500 nm的光谱范围内显着降低。三角结构形态也可以通过改变两个激光束之间的时间延迟来控制。

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