制作
材料科学
栅栏
锯齿波
光学
激光器
飞秒
平版印刷术
无光罩微影
衍射光栅
光电子学
纳米技术
电子束光刻
计算机科学
抵抗
物理
病理
图层(电子)
医学
计算机视觉
替代医学
作者
Jorge Fantova,Ainara Rodríguez,Luis Omeñaca,O. Beldarrain,G.G. Mandayo,Santiago M. Olaizola,José Lens,M. Gómez-Aranzadi
出处
期刊:Micromachines
[Multidisciplinary Digital Publishing Institute]
日期:2024-05-28
卷期号:15 (6): 711-711
被引量:1
摘要
Blazed gratings are periodic surface structures of great interest for applications such as friction control, light trapping, and spectrometry. While different laser processing methods have been explored to produce these elements, they have not yet surpassed conventional surface manufacturing techniques, often based on lithography processes or mechanical ruling. This work introduces a new approach based on the combination of ultrashort pulses and triangular beam shaping, which enables the generation of asymmetrical grooves in a single step. The main advantage of this strategy is that by simply changing the laser processing direction we can induce a significant modification in the ratio of asymmetry between the sidewall angles of the machined channels. The paper includes a comprehensive study, which has been supported by statistical tools, of the effect of this and other experimental parameters on the morphology of grooves machined on stainless steel. As a result, we achieved a wide range of geometries, with asymmetry ratios spanning from 1 to 5 and channel depths between 3 and 15 µm. Furthermore, we demonstrate the validity of the approach through the successful manufacture of blazed gratings of various slopes. The results reflect the versatility and cost-efficiency of the proposed fabrication strategy, and thus its potential to streamline the production of sawtooth gratings and other devices that are based on asymmetrical features.
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