The combination of deep wet etching and a magneto-rheological finishing (MRF) process is investigated to simultaneously improve laser damage resistance of a fused-silica surface at 355 nm. The subsequently deposited SiO2 coatings are researched to clarify the impact of substrate finishing technology on the coatings. It is revealed that a deep removal proceeding from the single side or double side had a significant impact on the laser-induced damage threshold (LIDT) of the fused silica, especially for the rear surface. After the deep etching, the MRF process that followed does not actually increase the LIDT, but it does ameliorate the surface qualities without additional LIDT degradation. The combination guarantee both the integrity of the s...
International audienceWe investigate the capacity of magnetorheological finishing (MRF) process to r...
International audienceWe investigate the efficiency of local CO2 laser processing of scratches on si...
The main aim of this dissertation was to identify physical causes that limit optical component‘s spe...
The enhancement of laser damage resistance of fused silica optics was a hotspot in scientific resear...
The effect of various HF-based etching processes on the laser damage resistance of scratched fused s...
We investigate the interest of deep wet etching with HF/HNO$_3$ or KOH solutions as a final step aft...
We investigate the interest of deep wet etching with HF/HNO$_3$ or KOH solutions as a final step aft...
International audienceWe investigate the interest of deep wet etching with HF/HNO$_3$ or KOH solutio...
International audienceWe investigate the interest of deep wet etching with HF/HNO$_3$ or KOH solutio...
International audienceWe investigate the interest of deep wet etching with HF/HNO$_3$ or KOH solutio...
Cette thèse porte sur l’amélioration de la résistance au flux laser de la surface descomposants opti...
Laser-induced damage on fused silica optics remains a major issue that limits the promotion of energ...
The laser damage resistance of coatings in high-power laser systems depends significantly on the sur...
International audienceWe investigate the efficiency of local CO2 laser processing of scratches on si...
The magnetorheological (MR) repair method can effectively repair the small-scale damage of fused sil...
International audienceWe investigate the capacity of magnetorheological finishing (MRF) process to r...
International audienceWe investigate the efficiency of local CO2 laser processing of scratches on si...
The main aim of this dissertation was to identify physical causes that limit optical component‘s spe...
The enhancement of laser damage resistance of fused silica optics was a hotspot in scientific resear...
The effect of various HF-based etching processes on the laser damage resistance of scratched fused s...
We investigate the interest of deep wet etching with HF/HNO$_3$ or KOH solutions as a final step aft...
We investigate the interest of deep wet etching with HF/HNO$_3$ or KOH solutions as a final step aft...
International audienceWe investigate the interest of deep wet etching with HF/HNO$_3$ or KOH solutio...
International audienceWe investigate the interest of deep wet etching with HF/HNO$_3$ or KOH solutio...
International audienceWe investigate the interest of deep wet etching with HF/HNO$_3$ or KOH solutio...
Cette thèse porte sur l’amélioration de la résistance au flux laser de la surface descomposants opti...
Laser-induced damage on fused silica optics remains a major issue that limits the promotion of energ...
The laser damage resistance of coatings in high-power laser systems depends significantly on the sur...
International audienceWe investigate the efficiency of local CO2 laser processing of scratches on si...
The magnetorheological (MR) repair method can effectively repair the small-scale damage of fused sil...
International audienceWe investigate the capacity of magnetorheological finishing (MRF) process to r...
International audienceWe investigate the efficiency of local CO2 laser processing of scratches on si...
The main aim of this dissertation was to identify physical causes that limit optical component‘s spe...