Modeling the focusing of a radially polarized laser beam with an initially flat-top intensity profile

Spencer W. Jolly
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Abstract

Radially polarized light beams present very interesting and useful behavior for creating small intensity spots when tightly focused, and manipulating nanostructures or charged particles via their longitudinal field. The modeling of the propagation of such vector beams, however, is almost always done using the lowest-order fundamental radially polarized beam or a single higher-order mode due to the complexity of vector diffraction theory. We show how a flat-top radially polarized beam, relevant for high-power lasers, can be modeled analytically using a sum of higher-order beams, describe a number of interesting qualities of such beams, and compare to numerically solved integral descriptions.
具有初始平顶强度曲线的径向偏振激光束的聚焦建模
径向偏振光束具有非常有趣和有用的特性,可在紧密聚焦时产生小强度光斑,并通过其纵向场操纵纳米结构或带电粒子。然而,由于矢量衍射理论的复杂性,这种矢量光束的传播建模几乎总是使用最低阶的基本径向偏振光束或单一的高阶模式。我们展示了如何利用高阶光束之和对与高功率激光器相关的平顶径向偏振光束进行分析建模,描述了此类光束的一些有趣特性,并与数值求解积分描述进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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