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Design of Multicore Photonic Crystal Fibers to Generate Cylindrical Vector Beams

机译:产生圆柱矢量束的多芯光子晶体光纤的设计

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摘要

We propose a method to generate cylindrical vector beams (CVBs) using a specially designed multicore photonic crystal fiber (PCF). In a PCF with six cores arranged symmetrically around the fiber axis, the light fields in the cores present different polarization states, promising the compositions of vector modes. By introducing small defect airholes in the cladding region and enlarging airholes around the cores to control the mode polarizations, azimuthally and radially polarized modes are obtained separately with low propagation loss and high mode selectivity. In addition, the operation wavelength range of the vector beams can be tuned simply by adjusting the diameters of air-holes inside the cladding defect. The far fields of the fiber outputs are studied as well, which show perfect CVBs with hollow-core intensity profiles. The PCF-based CVB-generator could make the applications of vector beams much more convenient by extending it into the all-fiber structure.
机译:我们提出了一种使用特殊设计的多芯光子晶体光纤(PCF)生成圆柱矢量束(CVB)的方法。在具有围绕光纤轴对称排列的六个纤芯的PCF中,纤芯中的光场呈现不同的偏振态,从而保证了矢量模式的组成。通过在包层区域引入小的缺陷气孔并扩大纤芯周围的气孔以控制模式极化,可以分别获得具有低传播损耗和高模式选择性的方位和径向极化模式。另外,通过调节包层缺陷内部的气孔的直径,可以简单地调节矢量束的工作波长范围。还研究了光纤输出的远场,显示了具有空心强度分布的完美CVB。通过基于PCF的CVB生成器将其扩展为全光纤结构,可以使矢量束的应用更加方便。

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