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Integral equation formulation for reflection by a mirror

机译:镜面反射的积分方程式

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摘要

When light is incident on a mirror, it induces a current density on its surface. This surface current density emits radiation, which is the observed reflected field. We consider a monochromatic incident field with an arbitrary spatial dependence, and we derive an integral equation for the Fourier-transformed surface current density. This equation contains the incident electric field at the surface as an inhomageneous term. The incident field, emitted by a source current density in front of the mirror, is then represented by an angular spectrum, and this leads to a solution of the integral equation. From this result we derive a relation between the surface current density and the current density of the source. It is shown with examples that this approach provides a simple method for obtaining the surface current density. It is also shown that with the solution of the integral equation, an image source can be constructed for any current source, and as illustration we construct the images of electric and magnetic dipoles and the mirror image of an electric quadrupole. By applying the general solution for the surface current density, we derive an expression for the reflected field as an integral over the source current distribution, and this may serve as an alternative to the method of images. (C) 2008 Optical Society of America.
机译:当光入射到镜子上时,它会在其表面上感应出电流密度。该表面电流密度发出辐射,这是观察到的反射场。我们考虑具有任意空间相关性的单色入射场,并针对傅立叶变换的表面电流密度导出一个积分方程。该方程式包含表面的入射电场作为非均匀项。然后,由反射镜前面的源电流密度发出的入射场由一个角度光谱表示,这导致了积分方程的解。根据该结果,我们得出表面电流密度与源电流密度之间的关系。通过示例显示,此方法提供了一种获取表面电流密度的简单方法。还表明,利用积分方程的解,可以为任何电流源构建一个图像源,并且作为说明,我们构建了电和磁偶极子的图像以及电四极子的镜像。通过应用表面电流密度的一般解决方案,我们得出反射场的表达式作为源电流分布的积分,这可以用作图像方法的替代方法。 (C)2008年美国眼镜学会。

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