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首页> 外文期刊>IEEE Photonics Technology Letters >3D Printing of Micro-Optic Spiral Phase Plates for the Generation of Optical Vortex Beams
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3D Printing of Micro-Optic Spiral Phase Plates for the Generation of Optical Vortex Beams

机译:微光学螺旋相位板的3D打印以产生旋涡光束

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Optical vortex is a type of structured beam with helical phase wavefronts that carry orbital-angular momentum (OAM) with different topological charge numbers. Optical vortex beams are of use in a wide range of areas ranging from communications to biomedical applications. In this letter, we demonstrate that microscale polymer spiral phase plates (SPPs) with different topological charges can be fabricated through two-photon polymerization by femtosecond 3D direct laser writing. These micro-optical SPPs can modify input light beams carrying no OAM into optical vortex beams carrying an OAM of 1h per photon. Intensity patterns and interferograms of the vortex beams are experimentally obtained, showing good agreement with numerical simulations. The two-photon direct laser writing technique with a high resolution of 100 nm enables easy fabrication of micro-optic devices such as SPPs with broad applications in mesoscale photonic devices.
机译:光学涡旋是一种结构化光束,具有螺旋相位波前,这些螺旋相位波前带有具有不同拓扑电荷数的轨道角动量(OAM)。光学涡旋光束可用于从通讯到生物医学应用的广泛领域。在这封信中,我们证明了飞秒3D直接激光写入可通过双光子聚合来制造具有不同拓扑电荷的微型聚合物螺旋相板(SPP)。这些微光学SPP可以将不带OAM的输入光束修改为每个光子带1h OAM的光学涡旋光束。实验获得了涡旋光束的强度图和干涉图,与数值模拟显示出很好的一致性。具有100 nm高分辨率的双光子直接激光写入技术可轻松制造具有中型光子器件广泛应用的微光器件,例如SPP。

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