Title of article :
Sapphire (0 0 0 1) surface modifications induced by long-pulse 1054 nm laser irradiation
Author/Authors :
Sheng-Nian Luo، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
10
From page :
9457
To page :
9466
Abstract :
We have investigated modifications of sapphire (0 0 0 1) surface with and without coating, induced by a single laser pulse with a 1054 nm wavelength, 2.2 View the MathML sources duration, 7.75 mm spot and energy of 20–110 J. A holographic optical element was used for smoothing the drive beam spatially, but it induced small hotspots which initiated damage on the uncoated and coated surfaces. The individual damage effects of hotspots became less pronounced at high fluences. Due to high temperature and elevated non-hydrostatic stresses upon laser irradiation, damage occurred as fracture, spallation, basal and rhombohedral twinning, melting, vitrification, the formation of nanocrystalline phases, and solid–solid phase transition. The extent of damage increased with laser fluences. The formation of regular linear patterns with three-fold symmetry (View the MathML source directions) upon fracture was due to rhombohedral twinning. Nanocrystalline View the MathML source-Al2O3 formed possibly from vapor deposition on the coated surface and manifested linear, triangular and spiral growth patterns. Glass and minor amounts of View the MathML source-Al2O3 also formed from rapid quenching of the melt on this side. The View the MathML source- to View the MathML source-Al2O3 transition was observed on the uncoated surface in some partially spalled alumina, presumably caused by shearing. The nominal threshold for laser-induced damage is about 47 J cm−2 for these laser pulses, and it is about 94 J cm−2 at the hotspots.
Keywords :
Sapphire , Laser irradiation , Spall , Fracture , Twinning , Nanocrystals
Journal title :
Applied Surface Science
Serial Year :
2007
Journal title :
Applied Surface Science
Record number :
1004360
Link To Document :
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