Marathay A S, McCalmont J F
Optical Sciences Center, University of Arizona, Tucson 85721, USA.
J Opt Soc Am A Opt Image Sci Vis. 2001 Oct;18(10):2585-93. doi: 10.1364/josaa.18.002585.
The scalar Huygens-Fresnel principle is reformulated to take into account the vector nature of light and its associated directed electric and magnetic fields. Based on Maxwell's equations, a vector Huygens secondary source is developed in terms of the fundamental radiating units of electromagnetism: the electric and magnetic dipoles. The formulation is in terms of the vector potential from which the fields are derived uniquely. Vector wave propagation and diffraction formulated in this way are entirely consistent with Huygens's principle. The theory is applicable to apertures larger than a wavelength situated in dark, perfectly absorbing screens and for points of observation in the right half-space at distances greater than a wavelength beyond the aperture. Alternatively, a formulation in terms of the fields is also developed; it is referred to as a vector Huygens-Fresnel theory. The proposed method permits the determination of the diffracted electromagnetic fields along with the detected irradiance.
标量惠更斯 - 菲涅耳原理被重新表述,以考虑光的矢量性质及其相关的定向电场和磁场。基于麦克斯韦方程组,根据电磁学的基本辐射单元:电偶极子和磁偶极子,推导出一个矢量惠更斯二次源。该公式是根据唯一能导出场的矢量势给出的。以这种方式表述的矢量波传播和衍射与惠更斯原理完全一致。该理论适用于位于黑暗、完全吸收屏中的大于波长的孔径,以及在孔径之外大于波长的距离处右半空间中的观察点。另外,也开发了一种基于场的公式;它被称为矢量惠更斯 - 菲涅耳理论。所提出的方法允许确定衍射电磁场以及检测到的辐照度。