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分数艾里光束。

Fractional Airy beams.

作者信息

Khonina S N, Ustinov A V

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2017 Nov 1;34(11):1991-1999. doi: 10.1364/JOSAA.34.001991.

Abstract

Airy beams possess a number of properties that ensure their multifunction and high relevance in many applications. This fact stimulates scientists to search for new modifications and generalizations of classical Airy beams. Several generalizations of the Airy functions are known, on the basis of both the modification of the differential equation and the variations in the integral representation. In this paper we propose and investigate a new type of Airy beams-fractional Airy beams (FrAiB). They are based on the generalization of the integral representation and are close to the Olver functions, but we are considering a wider range of the power-law dependence of the argument, including non-integer (fractional) values of the power. A theoretical and numerical analysis of the FrAiBs, as well as their symmetrized variants, was performed. The properties of FrAiBs, such as being non-diffracting and autofocusing, were numerically investigated by means of the fractional Fourier transform, describing the beam transformations by paraxial optical systems. We believe that new beams can be useful for laser manipulation techniques and lensless laser patterning.

摘要

艾里光束具有许多特性,这些特性确保了它们在许多应用中的多功能性和高度相关性。这一事实促使科学家们去寻找经典艾里光束的新变体和推广形式。基于微分方程的修改和积分表示的变化,人们已经知道了几种艾里函数的推广形式。在本文中,我们提出并研究了一种新型的艾里光束——分数阶艾里光束(FrAiB)。它们基于积分表示的推广,与奥尔弗函数相近,但我们考虑的是自变量幂律依赖的更广泛范围,包括幂次的非整(分数)值。对分数阶艾里光束及其对称变体进行了理论和数值分析。借助分数傅里叶变换对分数阶艾里光束的非衍射和自聚焦等特性进行了数值研究,该变换描述了傍轴光学系统对光束的变换。我们相信新光束可用于激光操纵技术和无透镜激光图案化。

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