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基于单模光纤通过三维直接激光写入实现轨道角动量光的传输。

Single mode fiber based delivery of OAM light by 3D direct laser writing.

作者信息

Weber Ksenia, Hütt Felix, Thiele Simon, Gissibl Timo, Herkommer Alois, Giessen Harald

出版信息

Opt Express. 2017 Aug 21;25(17):19672-19679. doi: 10.1364/OE.25.019672.

Abstract

We demonstrate orbital-angular momentum (OAM) light up to a topological charge of l=3 behind a single mode fiber. Femtosecond 3D direct laser writing is used to fabricate spiral phase plates of l=1,2 and 3, composed of 10 discrete steps, on the tip of single mode optical fibers. These structures efficiently convert out-coupled light from the fiber at 785 nm wavelength into optical vortex beams carrying an orbital-angular momentum of lℏper photon. Far field intensity patterns and interferograms of the OAM beams are recorded using a CCD camera. The results are in excellent agreement with numerical simulations obtained from the wave propagation method.

摘要

我们展示了在单模光纤后具有高达l = 3拓扑电荷的轨道角动量(OAM)光。利用飞秒三维直接激光写入技术,在单模光纤尖端制作了由10个离散台阶组成的l = 1、2和3的螺旋相位板。这些结构有效地将785 nm波长的光纤输出耦合光转换为每光子携带lℏ轨道角动量的光学涡旋光束。使用电荷耦合器件(CCD)相机记录了OAM光束的远场强度图案和干涉图。结果与通过波传播方法获得的数值模拟结果非常吻合。

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