Fine Optical Engineering Research Centre, Chengdu 610041, China.
Research Center of Laser Fusion, China Academy of Engineering Physics, Mianyang 621900, China.
Sci Rep. 2016 Oct 5;6:34818. doi: 10.1038/srep34818.
Scratches are deleterious to precision optics because they can obscure and modulate incident laser light, which will increase the probability of damage to optical components. We here imitated the generation of brittle and ductile scratches during polishing process and endeavored to find out the possible influence of scratches on laser induced damage. Brittle scratches can be induced by spiking large sized abrasives and small abrasives may only generate ductile scratches. Both surface roughness and transmittivity are degraded due to the appearance of brittle scratches while ductile scratches make little difference to surface roughness and transmittance. However, ductile and brittle scratches greatly increase the density of damage about one order of magnitude relative to unscratched surface. In particular, ductile scratches also play an unignorable role in laser induced damage, which is different from previous knowledge. Furthermore, ZrO and AlO polished surfaces appear to perform best in terms of damage density.
划痕对精密光学元件是有害的,因为它们会遮挡和调制入射激光,这将增加光学元件损坏的概率。我们在这里模拟了抛光过程中脆性和塑性划痕的产生,并努力找出划痕对激光诱导损伤的可能影响。大尺寸磨料的冲击会产生脆性划痕,而小磨料可能只会产生塑性划痕。由于脆性划痕的出现,表面粗糙度和透光率都会降低,而塑性划痕对表面粗糙度和透光率影响不大。然而,与未划伤表面相比,塑性和脆性划痕会使损伤密度增加约一个数量级。特别是,与以往的认识不同,塑性划痕在激光诱导损伤中也起着不可忽视的作用。此外,ZrO 和 AlO 抛光表面在损伤密度方面表现最好。