Publication | Open Access
Ultrashort-pulse laser calligraphy
79
Citations
13
References
2008
Year
Materials SciencePhotonicsEngineeringLaser SciencePhysicsOptical PropertiesAnisotropic Bubble FormationOptical GlassApplied PhysicsLaser ApplicationsLaser WritingGlass MaterialLaser Processing TechnologyUltrashort-pulse Laser CalligraphyFront TiltLaser-surface InteractionsUltrafast Lasers
Control of structural modifications inside silica glass by changing the front tilt of an ultrashort pulse is demonstrated, achieving a calligraphic style of laser writing. The phenomena of anisotropic bubble formation at the boundary of an irradiated region and modification transition from microscopic bubbles formation to self-assembled form birefringence are observed, and the physical mechanisms are discussed. The results provide the comprehensive evidence that the light beam with centrosymmetric intensity distribution can produce noncentrosymmetric material modifications.
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