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通过数值求解矢量基尔霍夫积分来确定几何光学光线追迹的局限性。

Identify the limits of geometric optics ray tracing by numerically solving the vector Kirchhoff integral.

作者信息

Ding Jiachen, Yang Ping, Mishchenko Michael I, Nevels Robert D

出版信息

Opt Express. 2020 Mar 30;28(7):10670-10682. doi: 10.1364/OE.389097.

Abstract

The properties of a pencil of light as defined approximately in the geometric optics ray tracing method are investigated. The vector Kirchhoff integral is utilized to accurately compute the electromagnetic near field in and around the pencil of light with various beam base sizes, shapes, propagation directions and medium refractive indices. If a pencil of light has geometric mean cross section size of the order p times the wavelength, it can propagate independently to a distance p times the wavelength, where most of the beam energy diffuses out of the beam region. This is consistent with a statement that van de Hulst made in a classical text on light scattering. The electromagnetic near fields in the pencil of light are not uniform, have complicated patterns within short distances from the beam base, and the fields tend to converge to Fraunhofer diffraction fields far away from the base.

摘要

研究了在几何光学光线追踪方法中大致定义的一束光的特性。利用矢量基尔霍夫积分精确计算了具有各种光束基部尺寸、形状、传播方向和介质折射率的光束内部及周围的电磁近场。如果一束光的几何平均横截面尺寸为波长的p倍量级,它可以独立传播到波长的p倍距离,此时大部分光束能量扩散出光束区域。这与范德胡尔斯在一本关于光散射的经典著作中的表述一致。光束内的电磁近场并不均匀,在离光束基部较近的短距离内具有复杂的图案,并且这些场在远离基部的地方趋向于收敛到夫琅禾费衍射场。

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