Publication | Closed Access
Generating Switchable and Reconfigurable Optical Vortices via Photopatterning of Liquid Crystals
196
Citations
43
References
2013
Year
Optical MaterialsEngineeringMicro-optical ComponentProgrammable PhotonicsOptical ComputingOptical PropertiesDmd-based Microlithography SystemOptical SwitchingOptical SystemsPhotonicsReconfigurable Optical VorticesOrganic PhotonicsLiquid-crystal Fork GratingsOptical CommunicationsMicrofabricationApplied PhysicsOptoelectronicsLiquid CrystalsDiffractive Optic
Liquid-crystal fork gratings are demonstrated through photopatterning realized on a DMD-based microlithography system. This supplies a new strategy for generating fast switchable, reconfigurable, wavelength-tolerant and polarization-insensitive optical vortices. The technique has great potential in broad fields such as OAM-based quantum computations, optical communications, and micromanipulation.
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