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具有高阶圆柱圆偏振的强聚焦光波的自旋-轨道转换

Spin-Orbital Conversion of a Strongly Focused Light Wave with High-Order Cylindrical-Circular Polarization.

作者信息

Kotlyar Victor V, Stafeev Sergey S, Kozlova Elena S, Nalimov Anton G

机构信息

IPSI RAS-Branch of the FSRC "Crystallography and Photonics" RAS, Molodogvardeyskaya 151, 443001 Samara, Russia.

出版信息

Sensors (Basel). 2021 Sep 26;21(19):6424. doi: 10.3390/s21196424.

Abstract

We discuss interesting effects that occur when strongly focusing light with -order cylindrical-circular polarization. This type of hybrid polarization combines properties of the -order cylindrical polarization and circular polarization. Reluing on the Richards-Wolf formalism, we deduce analytical expressions that describe E- and H-vector components, intensity patterns, and projections of the Poynting vector and spin angular momentum (SAM) vector at the strong focus. The intensity of light in the strong focus is theoretically and numerically shown to have an even number of local maxima located along a closed contour centered at an on-axis point of zero intensity. We show that light generates 4 vortices of a transverse energy flow, with their centers located between the local intensity maxima. The transverse energy flow is also shown to change its handedness an even number of times proportional to the order of the optical vortex via a full circle around the optical axis. It is interesting that the longitudinal SAM projection changes its sign at the focus 4 times. The longitudinal SAM component is found to be positive, and the polarization vector is shown to rotate anticlockwise in the focal spot regions where the transverse energy flow rotates anticlockwise, and vice versa-the longitudinal SAM component is negative and the polarization vector rotates clockwise in the focal spot regions where the transverse energy flow rotates clockwise. This spatial separation at the focus of left and right circularly polarized light is a manifestation of the optical spin Hall effect. The results obtained in terms of controlling the intensity maxima allow the transverse mode analysis of laser beams in sensorial applications. For a demonstration of the proposed application, the metalens is calculated, which can be a prototype for an optical microsensor based on sharp focusing for measuring roughness.

摘要

我们讨论了在使用 - 阶柱面 - 圆偏振对光进行强聚焦时出现的有趣效应。这种混合偏振结合了 - 阶柱面偏振和圆偏振的特性。基于理查兹 - 沃尔夫形式理论,我们推导出了描述强聚焦处电场和磁场矢量分量、强度分布以及坡印廷矢量和自旋角动量(SAM)矢量投影的解析表达式。理论和数值结果表明,强聚焦处光的强度沿以强度为零的轴上点为中心的闭合轮廓有偶数个局部最大值。我们表明,光会产生4个横向能量流涡旋,其中心位于局部强度最大值之间。横向能量流还通过围绕光轴完整旋转一圈,以与光学涡旋阶数成比例的偶数次数改变其手性。有趣的是,纵向SAM投影在焦点处改变符号4次。发现纵向SAM分量为正,并且在横向能量流逆时针旋转的焦斑区域中,偏振矢量显示为逆时针旋转,反之亦然——在横向能量流顺时针旋转的焦斑区域中,纵向SAM分量为负且偏振矢量顺时针旋转。左右圆偏振光在焦点处的这种空间分离是光学自旋霍尔效应的一种表现。通过控制强度最大值获得的结果允许在传感应用中对激光束进行横向模式分析。为了演示所提出的应用,计算了超表面透镜,它可以作为基于精确聚焦用于测量粗糙度的光学微传感器的原型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1659/8512293/611b22732e42/sensors-21-06424-g001.jpg

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