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首页> 外文期刊>Journal of optics >Transformation of the singular skeleton in optical-vortex beams diffracted by a rectilinear phase step
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Transformation of the singular skeleton in optical-vortex beams diffracted by a rectilinear phase step

机译:直角相位步骤衍射光 - 涡束中的奇异骨骼的转化

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摘要

Based on the Kirchhoff-Fresnel approximation, we numerically analyze spatial characteristics of the light field formed after a circular Laguerre-Gaussian beam with a single-charged optical vortex (OV) passes the transparent screen with a rectilinear phase step. The main attention is paid to the localization and interactions of the OVs, which form the singular skeleton of the transformed field. The phase-step influence depends on its value and position with respect to the beam axis. Upon 'weak perturbation' (low phase step), the main effect is that the OV is shifted from the initial axial position and describes a closed loop when the phase step is monotonously translated across the beam. The 'strong perturbation' (the phase step is close to pi) induces topological reactions with emergence and annihilation of additional singularities in the near-axial region of the diffracted beam cross section. These features are interpreted based on the 3D OV trajectories that show an intricate behavior with kinks and 'retrograde' segments. The details of the OV migration and singular skeleton transformations reveal the fundamental helical nature and transverse energy circulation in the OV beams. The numerical results obtained in this paper show possibilities for the purposeful control of the singular skeleton characteristics within the transformed beam, and can be useful for the OV diagnostics, OV metrology and micromanipulation techniques.
机译:基于Kirchhoff-Fresnel近似,我们在具有单电光学涡流(OV)的圆形LAGUERRE-高斯梁中形成的光场的空间特性通过直线相移透明屏幕。主要关注ovs的定位和相互作用,形成转化田的奇异骨骼。相位步长的影响取决于其值和相对于光束轴的位置。在“扰动较弱”(低相位)时,主要效果是OV从初始轴向位置移位,并且当相位步骤在光束上单调单调时,描述闭环。 “强烈的扰动”(相位步骤接近PI)诱导拓扑反应与衍射光束横截面的近轴向区域中的附加奇面积的出现和湮灭。这些功能基于3D OV轨迹来解释,该轨迹显示具有扭结和“逆行”段的复杂行为。 OV迁移和奇异骨架变换的细节揭示了OV光束中的基本螺旋性质和横向能量循环。本文获得的数值结果表明,有目的控制转化梁内的奇异骨架特性的可能性,可用于OV诊断,OV计量和微控制技术。

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