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Scattering of a Gaussian beam by an infinite cylinder with arbitrary location and arbitrary orientation: numerical results

机译:高斯光束在任意位置和任意方向上的无限圆柱体的散射:数值结果

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We present numerical results concerning the properties of the electromagnetic field scattered by an infinite circular cylinder illuminated by a circular Gaussian beam. The cylinder is arbitrarily located and arbitrarily oriented with respect to the illuminating Gaussian beam. Numerical evaluations are provided within the framework of a rigorous electromagnetic theory, the generalized Lorenz-Mie theory, for infinite cylinders. This theory provides new insights that could not be obtained from older formulations, i.e., geometrical optics and plane-wave scattering. In particular, some emphasis is laid on the waveguiding effect and on the rainbow phenomenon whose fine structure is hardly predictable by use of geometrical optics.
机译:我们提出了关于由圆高斯光束照射的无限圆柱散射的电磁场的性质的数值结果。圆柱体相对于照明高斯光束任意地定位和任意定向。在严格的电磁理论(广义的Lorenz-Mie理论)的框架内提供了无穷圆柱体的数值评估。该理论提供了从较旧的公式(即几何光学和平面波散射)无法获得的新见解。特别地,将重点放在波导效应和彩虹现象上,这些彩虹现象的精细结构很难通过使用几何光学来预测。

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