Alig Thimotheus, Bartels Nils, Allenspacher Paul, Balasa Istvan, Böntgen Tammo, Ristau Detlev, Jensen Lars
Opt Express. 2021 May 10;29(10):14189-14200. doi: 10.1364/OE.418368.
In order to enhance the reliability and performance of space-based Lidar systems, it is desirable to increase the damage resistance of ultraviolet antireflective coatings. For laser pulses with nanosecond pulse duration, laser-induced damage is known to be triggered by nano-sized defects embedded in the optical coating. In this work, we demonstrate the mitigation of damage precursors during the manufacturing of ion-beam sputtered (IBS) coatings using two approaches: ion bombardment with a secondary ion source and laser irradiation with a nanosecond-pulsed laser. Optical coatings produced with both technologies show a significantly increased damage threshold when tested in large-area raster scans.
为了提高天基激光雷达系统的可靠性和性能,提高紫外增透膜的抗损伤能力是很有必要的。对于纳秒脉冲持续时间的激光脉冲,已知激光诱导损伤是由光学涂层中嵌入的纳米尺寸缺陷引发的。在这项工作中,我们展示了在离子束溅射(IBS)涂层制造过程中使用两种方法减轻损伤前驱体:用二次离子源进行离子轰击和用纳秒脉冲激光进行激光辐照。用这两种技术生产的光学涂层在大面积光栅扫描测试中显示出损伤阈值显著提高。