Detection of subsurface trace impurity in polished fused silica with biological method
Author:
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference31 articles.
1. Investigation of laser-induced damage by various initiators on the subsurface of fused silica
2. Subsurface defects of fused silica optics and laser induced damage at 351 nm
3. Study of the evolution of mechanical defects on silica samples under laser irradiation at 355 nm
4. Progress in the understanding of fracture related laser damage of fused silica
5. Fracture-induced subbandgap absorption as a precursor to optical damage on fused silica surfaces
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1. 3D microscopy in industrial measurements;Journal of Microscopy;2022-12-07
2. A two-step physical-chemical etching technique to improve laser damage resistance of fused silica;Journal of Materials Research and Technology;2022-07
3. Assessing the UV-pulse-laser-induced damage density of fused silica optics using photo-thermal absorption distribution probability curves;Optics Letters;2022-01-26
4. Experimental investigation of subsurface damage depth of lapped optics by fluorescent method;Journal of Central South University;2018-07
5. The size prediction of potential inclusions embedded in the sub-surface of fused silica by damage morphology;Open Physics;2017-04-30
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