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Bridging the quasi-static and the physical optics approximations: an elliptic disk case

机译:桥接准静态和物理光学近似:椭圆盘盒

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摘要

A reformulated integral equation is solved inside an elliptic disk particle for an electromagnetic field formulation bridging the quasi-static and the physical optics approximations. The scattering amplitude tensor elements associated with such a field formulation are derived and then used to formulate the extinction cross sections. It is shown that the extinction cross sections have a frequency dependence and an incidence angle dependence similar to those associated with the physical optics approximation, and they have a particle shape dependence similar to that associated with the quasi-static approximation. Furthermore, at the high-frequency limits, it is shown that those cross sections could reach the value known in the literature by the extinction paradox, namely, twice the particle geometric shadow area. (C) 1998 Optical Society of America. [References: 12]
机译:在椭圆盘状粒子内部求解了重新公式化的积分方程,以建立桥接准静态和物理光学近似的电磁场公式。推导与这种场公式相关的散射振幅张量元素,然后将其用于确定消光截面。结果表明,消光截面的频率依赖性和入射角依赖性类似于与物理光学近似相关的消光截面,并且它们的粒子形状依赖性与准静态近似相关。此外,在高频极限下,表明这些横截面可以达到灭绝悖论在文献中已知的值,即两倍于粒子几何阴影面积。 (C)1998年美国眼镜学会。 [参考:12]

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