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Complex periodic micro/nanostructures on 6H-SiC crystal induced by the interference of three femtosecond laser beams
34
Citations
24
References
2009
Year
Materials SciencePhotonicsFemtosecond Laser BeamsComplex Periodic Micro/nanostructuresEngineeringLaser Polarization CombinationsPhysicsAdvanced Laser ProcessingOptical PropertiesApplied PhysicsLaser ApplicationsLaser MaterialLaser Processing Technology6H-sic CrystalLaser-assisted DepositionLaser-surface InteractionsNanophotonics
We reported three types of complex micro/nanostructures on 6H-SiC crystal induced by the interferences of three femtosecond laser beams by arranging three types of laser polarization combinations. The micro/nanostructures are composed of two parts: two-dimensional long-periodic micropatterns determined by the interferential intensity pattern and short-periodic nanopatterns determined by the interferential polarization pattern. Theoretical calculation indicates that the different polarization combinations will lead to a distinct complex interferential polarization pattern and intensity pattern, and they accord well with the experimental results.
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