Publication | Closed Access
High fill factor microlens array fabrication using direct laser writing and its application in wavefront detection
45
Citations
22
References
2020
Year
Direct Laser WritingVortex BeamsEngineeringWavefront DetectionMicroscopyFocusing EfficiencyOptical MetrologyMicro-optical ComponentBeam OpticLaser Micro-processingPhotonic MetrologyOptical SystemsNanolithography MethodMaterials SciencePhotonicsShack-hartmann Wavefront SensorFabrication TechniqueLaser-assisted DepositionOptical ComponentsAdvanced Laser ProcessingMicrofabricationApplied PhysicsOptical System Analysis
We fabricate 100% fill factor microlens arrays (MLAs) using femtosecond laser direct writing. The array consists of periodical hexagonal plano-convex microlens units with a diameter of 9 µm. The focusing efficiency of each microlens is measured to be 92%. Combined with a CCD camera, the MLA works as a Shack-Hartmann wavefront sensor. We use it to detect wavefronts of both oblique incident plane beams and vortex beams. The experimental results match well with theoretical ones.
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