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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Focusing properties of arbitrary optical fields combining spiral phase and cylindrically symmetric state of polarization
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Focusing properties of arbitrary optical fields combining spiral phase and cylindrically symmetric state of polarization

机译:螺旋相和圆柱对称极化结合任意光学场的聚焦性能

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摘要

The tight focusing properties of optical fields combining a spiral phase and cylindrically symmetric state of polarization are presented. First, we theoretically analyze the mathematical characterization, Stokes parameters, and Poincare sphere representations of arbitrary cylindrical vector (CV) vortex beams. Then, based on the vector diffraction theory, we derive and build an integrated analytical model to calculate the electromagnetic field and Poynting vector distributions of the input CV vortex beams. The calculations reveal that a generalized CV vortex beam can generate a sharper focal spot than that of a radially polarized (RP) plane beam in the focal plane. Besides, the focal size decrease accompanies its elongation along the optical axis. Hence, it seems that there is a trade-off between the transverse and axial resolutions. In addition, under the precondition that the absolute values between polarization order and topological charge are equal, a higher-order CV vortex can also achieve a smaller focal size than an RP plane beam. Further, the intensity for the sidelobe admits a significant suppression. To give a deep understanding of the peculiar focusing properties, the magnetic field and Poynting vector distributions are also demonstrated in detail. These properties may be helpful in applications such as optical trapping and manipulation of particles and superresolution microscopy imaging. (C) 2018 Optical Society of America
机译:呈现了组合螺旋相和圆柱对称极化的光场的紧密聚焦性能。首先,我们理论上分析了任意圆柱形载体(CV)涡流束的数学表征,Stokes参数和庞加勒球形表示。然后,基于矢量衍射理论,我们得出并构建一个集成的分析模型来计算输入CV涡流束的电磁场和Poynting vector分布。计算揭示了广义的CV涡流光束可以产生比焦平面中的径向偏振(RP)平面光束的焦点。此外,焦点尺寸减小其沿光轴伸长率。因此,似乎在横向和轴向分辨率之间存在权衡。另外,在极化顺序和拓扑电荷之间的绝对值等于的前提下,高阶CV涡流也可以实现比RP平面光束更小的焦距。此外,Sidelobe的强度承认显着抑制。为了深入了解特殊的聚焦性质,还详细说明了磁场和磁场和Poynting载体分布。这些性质可能有助于诸如光学捕获和操纵颗粒和超级化显微镜成像的应用。 (c)2018年光学学会

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