Loose abrasive slurries for optical glass lapping
Author:
Publisher
The Optical Society
Reference19 articles.
1. Status of the LMJ project
2. Status of the National Ignition Facility project
3. Role of Cracks, Pores, and Absorbing Inclusions on Laser Induced Damage Threshold at Surfaces of Transparent Dielectrics
4. Role of light intensification by cracks in optical breakdown on surfaces
5. Influence of subsurface cracks on laser-induced surface damage
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