Publication | Closed Access
Laser ablation of dielectrics with temporally shaped femtosecond pulses
181
Citations
13
References
2002
Year
EngineeringMechanical EngineeringLaser AblationLaser Micro-processingOptical PropertiesUltrafast LasersMaterials SciencePhotonicsMaterial SofteningPhysicsUltrafast Laser PhysicsLaser Processing TechnologyLaser-assisted DepositionUltrafast Laser MicrostructuringAdvanced Laser ProcessingMicrofabricationApplied PhysicsUltrafast OpticsSequential Energy Delivery
A significant improvement in the quality of ultrafast laser microstructuring of dielectrics is demonstrated by using temporally shaped pulse trains with subpicosecond separation. The sequential energy delivery induces a material softening during the initial steps of excitation changing the energy coupling for the subsequent steps. This leads to lower stress, cleaner structures, and provides a material-dependent optimization process.
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