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Creating discrete cylindrical vector beams using coherently combined fiber arrays

机译:使用相干组合的光纤阵列创建离散的圆柱矢量光束

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A novel method is presented for beam shaping far field intensity distributions using coherently combined fiber arrays. Traditionally, coherent arrays have been composed of linearly polarized elements having their polarization vector along a common axis. In this novel method, the fibers are arranged uniformly on the perimeter of a circle, and the linearly polarized beams are oriented with their polarization vectors arranged in a cylindrical fashion such that each subsequent vector is rotated by 2π/N where N is the number of elements on the circle. The elements each have the same Gaussian intensity distribution and power. The ensemble yields a far field intensity pattern that is a good approximation to a cylindrical vector (CV) beam which is characterized by a nonuniform polarization distribution and a null in the center of the beam. These synthetically created CV beams, or discrete cylindrical vector (DCV) beams, can be represented in a closed form solution to predict the far field intensity distributions. This solution is shown to agree with experimental results where several values of N, the number of elements, were tested. In addition, some more complex geometries such as nested geometries, fractal geometries, and some nonuniform geometries have been simulated, all of which also have a central null in the beam and have a nonuniform polarization distribution. These results are in contrast to linearly polarized beams, where the intensity peaks on axis, and from traditional cylindrical vector beams, which are generated by a single laser cavity.
机译:提出了一种使用相干组合光纤阵列对光束远场强度分布进行整形的新方法。传统上,相干阵列由线性偏振元件组成,其偏振矢量沿公共轴。在这种新颖的方法中,光纤被均匀地排列在一个圆的周长上,并且线性偏振光束以其偏振矢量排列成圆柱体的方式定向,使得每个后续矢量旋转2π/ N,其中N是圆上的元素。每个元素具有相同的高斯强度分布和功率。整体产生了一个远场强度图,它非常接近圆柱矢量(CV)光束,其特征是偏振分布不均匀且光束中心没有零点。这些合成创建的CV光束或离散圆柱矢量(DCV)光束可以用封闭形式表示,以预测远场强度分布。该解决方案显示出与实验结果相符,其中测试了N的几个值(元素数量)。另外,已经模拟了一些更复杂的几何形状,例如嵌套几何形状,分形几何形状和一些非均匀几何形状,所有这些几何形状在光束中也具有中心零点并且具有不均匀的偏振分布。这些结果与线性偏振光束相反,在线性偏振光束中,强度在轴上达到峰值,而传统的圆柱形矢量光束是由单个激光腔产生的。

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