Publication | Open Access
Parallel laser micromachining based on diffractive optical elements with dispersion compensated femtosecond pulses
31
Citations
27
References
2013
Year
EngineeringMechanical EngineeringMicro-optical ComponentLaser Micro-processingOptical PropertiesBlind HolesDiffractive Optical ElementsUltrafast LasersPhotonicsParallel LaserLaser Processing TechnologyFemtosecond PulsesLaser-assisted DepositionChromatic AberrationsElectro-optics DeviceAdvanced Laser ProcessingMicrofabricationApplied PhysicsMicromachiningOptoelectronicsDiffractive Optic
We experimentally demonstrate multi-beam high spatial resolution laser micromachining with femtosecond pulses. The effects of chromatic aberrations as well as pulse stretching on the material processed due to diffraction were significantly mitigated by using a suited dispersion compensated module (DCM). This permits to increase the area of processing in a factor 3 in comparison with a conventional setup. Specifically, 52 blind holes have been drilled simultaneously onto a stainless steel sample with a 30 fs laser pulse in a parallel processing configuration.
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