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A vector Huygens-Fresnel model of the diffraction of electromagnetic waves

机译:电磁波衍射的矢量惠更斯-菲涅耳模型

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摘要

The scalar Huygens-Fresnel Principle describing the propagation of light is reformulated to take into account the vector nature of light and the associated directed electric and magnetic fields. A vector Huygens secondary source is developed in terms of the fundamental radiating units of electromagnetism: the electric and magnetic dipoles. The vector Huygens wavelets are incorporated into a computer model that calculates the resulting vector fields after light passes through a diffracting system by a wavefront reconstruction process similar to that originally proposed by Huygens himself in 1687. Fresnel and Fraunhofer diffraction patterns are computed for common apertures such as rectangles and circles where theoretical results are available for comparison and validation of the model. However, irregular apertures not easily described in closed mathematical form are studied as well. Both completely absorbing and infinitely conducting screens are considered as well as plane wave and spherical illumination.
机译:重新定义描述光传播的标量惠更斯-菲涅耳原理,以考虑到光的矢量性质以及相关的定向电场和磁场。矢量惠更斯次级源是根据电磁学的基本辐射单位:电和磁偶极子开发的。将矢量惠更斯小波合并到一个计算机模型中,该模型通过类似于韦恩斯本人于1687年最初提出的波阵面重建过程,计算光通过衍射系统后得到的矢量场。对于常见的孔径,可以计算出菲涅耳和弗劳恩霍夫衍射图样如矩形和圆形,其中理论结果可用于模型的比较和验证。但是,还研究了不易以封闭数学形式描述的不规则孔径。完全吸收和无限传导的屏幕以及平面波和球形照明均被考虑。

著录项

  • 作者

    McCalmont John Francis;

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  • 年度 1999
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  • 原文格式 PDF
  • 正文语种 en_US
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