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Focus engineering based on analytical formulae for tightly focused polarized beams with arbitrary geometric configurations of linear polarization

机译:基于分析公式的重点聚焦偏振梁的焦点工程,具有线性极化的任意几何配置

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摘要

Highly confined electromagnetic fields with controllable intensity profiles and polarization orientations are greatly desired in many fields. In this paper, we report on the generation of highly confined fields through tightly focused locally linearly polarized beams. Using the Richards-Wolf vectorial diffraction method, we derive and build integrated analytical formulae for calculating the tightly focused field of polarized beams with arbitrary geometric configurations of linear polarization. Based on the analytical model, the focusing properties of four types of polarized light beams, i.e., linearly, azimuthally, radially, and spatially variant polarized beams, with locally linear states of polarization are investigated numerically and discussed in detail. By manipulating the radial and azimuthal indices and initial phases, we obtain a tunable three-dimensional optical cage, multifoci, optical needles, and channels in the focal volume of a high-numerical-aperture objective lens. These peculiar properties may find applications in fields such as optical trapping and manipulation of nanoparticles and super-resolution microscopy imaging. (C) 2017 Optical Society of America
机译:在许多领域中,具有可控强度分布和偏振取向的高度限制电磁场。在本文中,我们通过紧密聚焦的局部线性偏振光束报告高度限制的字段。使用Richards-Wolf向量衍射方法,我们得出并建立了用于计算具有线性极化的任意几何配置的偏振梁的紧密聚焦领域的集成分析公式。基于分析模型,在数值上对具有局部线性偏振的四种偏振光束,即线性,方位,径向,径向和空间有偏振梁的聚焦性质。通过操纵径向和方位角指数和初始相位,我们获得可调谐的三维光学笼,多焦点,光针和在高数孔径物镜的焦平中的通道。这些特殊的特性可以在诸如光学捕获和操纵纳米颗粒和超分辨率显微镜成像的领域中找到应用。 (c)2017年光学学会

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