Publication | Closed Access
Advances in femtosecond laser processing of optical material for device applications
33
Citations
90
References
2020
Year
Optical MaterialsEngineeringOptical GlassLaser ApplicationsLaser AblationLaser MaterialOptical MaterialAbstract Femtosecond LaserLaser OpticsLaser Micro-processingOptical PropertiesMaterials FabricationTransparent MaterialsFemtosecond Laser ProcessingUltrafast LasersMaterials SciencePhotonicsDevice ApplicationsPhotonic MaterialsNanomanufacturingLaser Processing TechnologyLaser-assisted DepositionAdvanced Laser ProcessingMicrofabricationApplied PhysicsGlass PhotonicsNanofabricationUltrafast OpticsChalcogenide GlassesLaser-surface Interactions
Abstract Femtosecond laser induced changes and writing in optical materials have proven to be an excellent route to the production of high‐quality micro‐ and nanofabrication of functional devices. In this paper we present the latest advancements in femtosecond laser processing of optical materials for device applications. We look at femtosecond direct laser writing for photonic device fabrication in fused silica and active glasses. We also discuss femtosecond laser writing and wet chemical etching in fused silica, Foturan, and chalcogenide glasses with applications in microfluidics, optics, sensors, and photonic devices.
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