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三维艾里光束的非傍轴波分析

Nonparaxial wave analysis of three-dimensional Airy beams.

作者信息

Kaganovsky Yan, Heyman Ehud

机构信息

School of Electrical Engineering, Tel Aviv University, Tel-Aviv 69978, Israel.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2012 May 1;29(5):671-88. doi: 10.1364/JOSAA.29.000671.

Abstract

The three-dimensional Airy beam (AiB) is thoroughly explored from a wave-theory point of view. We utilize the exact spectral integral for the AiB to derive local ray-based solutions that do not suffer from the limitations of the conventional parabolic equation (PE) solution and are valid far beyond the paraxial zone and for longer ranges. The ray topology near the main lobe of the AiB delineates a hyperbolic umbilic catastrophe, consisting of a cusped double-layered caustic. In the far zone this caustic is deformed and the field loses its beam shape. The field in the vicinity of this caustic is described uniformly by a hyperbolic umbilic canonical integral, which is structured explicitly on the local geometry of the caustic. In order to accommodate the finite-energy AiB, we also modify the conventional canonical integral by adding a complex loss parameter. The canonical integral is calculated using a series expansion, and the results are used to identify the validity zone of the conventional PE solution. The analysis is performed within the framework of the nondispersive AiB where the aperture field is scaled with frequency such that the ray skeleton is frequency independent. This scaling enables an extension of the theory to the ultrawideband regime and ensures that the pulsed field propagates along the curved beam trajectory without dispersion, as will be demonstrated in a subsequent publication.

摘要

从波动理论的角度对三维艾里光束(AiB)进行了全面研究。我们利用艾里光束的精确谱积分来推导基于局部光线的解,这些解不受传统抛物方程(PE)解的限制,并且在远超出傍轴区域和更长距离范围内都是有效的。艾里光束主瓣附近的光线拓扑描绘了一种双曲脐点灾变,它由一个尖点双层焦散组成。在远场区域,这种焦散会发生变形,并且场失去其光束形状。在这个焦散附近的场由一个双曲脐点正则积分统一描述,该积分明确地基于焦散的局部几何结构构建。为了适应有限能量的艾里光束,我们还通过添加一个复损耗参数来修改传统的正则积分。正则积分通过级数展开进行计算,其结果用于确定传统抛物方程解的有效区域。该分析是在非色散艾里光束的框架内进行的,其中孔径场随频率缩放,使得光线骨架与频率无关。这种缩放使得理论能够扩展到超宽带 regime,并确保脉冲场沿着弯曲的光束轨迹传播而不发生色散,这将在后续的出版物中得到证明。

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