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Optical vortex generation with a 'fork' hologram under conditions of high-angle diffraction

机译:在高角度衍射条件下用“叉状”全息图产生光学涡旋

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摘要

Spatial characteristics of the optical-vortex (OV) beams created during the Gaussian beam diffraction by a grating with groove bifurcation are analyzed theoretically and numerically. In contrast to previous works, condition of small-angle diffraction is no longer required and the diffracted beam can be strongly deformed. This causes the intensity profile rotation and the high-order OV decomposition into a set of secondary single-charged OVs. These effects are studied quantitatively and confronted with similar properties of a Laguerre-Gaussian beam that undergoes astigmatic telescopic transformation. In contrast to the latter case, the secondary OVs do not lie on a single straight line within the beam cross section, and morphology parameters of the individual secondary OVs carried by the same beam are, in general, different. Conditions for maximum relative separation of the secondary OVs with respect to the beam transverse size are specified. The results can be used for practical generation of OV beams and OV arrays with prescribed properties.
机译:从理论和数值上分析了高斯光束衍射过程中由具有沟槽分叉的光栅产生的光学涡旋光束的空间特性。与以前的工作相反,不再需要小角度衍射的条件,并且衍射光束可以强烈变形。这导致强度分布旋转和高阶OV分解为一组次级单电荷OV。对这些效应进行了定量研究,并遇到了经过散光伸缩变换的拉盖尔-高斯光束的相似特性。与后一种情况相比,次要OV不在光束横截面内的一条直线上,并且同一光束所承载的各个次要OV的形态参数通常是不同的。规定了相对于光束横向尺寸的次级OV最大相对间隔的条件。结果可用于具有指定属性的OV光束和OV阵列的实际生成。

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