Ellipse field to vector field singularities through diffraction

B. Komal, S. Deepa, S. K. Pal, Sunil Kumar, P. Senthilkumaran
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Abstract

Ellipse fields and vector fields refer to the electric fields with predominant states of polarization as elliptical and linear, respectively. Singularities in these ellipse fields (C points and L lines) and vector fields (V points) refer to points where some of the parameters related to polarization are not defined. A simple technique for transforming a C point to a V point is suggested by diffracting a higher order integral C points from a fork grating. The fork grating transfers the orbital angular momentum (OAM) in each of the diffraction orders yielding polarization singularities with different OAM and spin angular momentum (SAM) compositions. A V point singularity is obtained in one of the diffracted orders depending on the OAM content in each of the superposing circular basis of the input C point, and the charge of the fork grating. The index of the desired V point and the order in which it occurs can be engineered by appropriately choosing the input C point beam and the charge of the fork grating. Therefore, this diffraction technique can be used for the transformation of an ellipse field singularity to a vector field singularity through just a single element, i.e., a fork grating.
椭圆场到矢量场的衍射奇异性
椭圆场和矢量场是指以椭圆和线性为优势偏振态的电场。这些椭圆场(C点和L线)和矢量场(V点)中的奇点是指与极化有关的某些参数没有定义的点。提出了一种将C点变换为V点的简单方法,即从叉形光栅中衍射一个高阶积分C点。叉形光栅传递每个衍射阶的轨道角动量,产生具有不同轨道角动量和自旋角动量组成的偏振奇点。根据输入C点的每个重叠圆基中的OAM含量和叉形光栅的电荷,在一个衍射阶上得到V点奇点。通过适当选择输入的C点光束和叉形光栅的电荷,可以设计所需V点的折射率及其发生的顺序。因此,这种衍射技术可以通过单个元件,即叉形光栅,将椭圆场奇点转化为矢量场奇点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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