Temperature field analysis of TiO_2 films with high-absorptance inclusions
Author:
Publisher
The Optical Society
Reference14 articles.
1. Absorption calorimetry and laser-induced damage threshold measurements of antireflective-coated ZnSe and metal mirrors at 10.6 μm
2. Reactive evaporation of low-defect density hafnia
3. Photothermal measurements on optical thin films
4. Absorptance measurements of optical coatings: a round robin
5. Fatigue laser-induced damage in transparent materials
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