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Scattering of an arbitrary shaped object by using vectorial complex ray model

机译:利用矢量复射线模型散射任意形状的物体

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Vectorial complex ray model has been developed to describe the scattering of smooth surface object of arbitrary shape. In this model, the property of a wave — curvature of wavefront is integrated in ray model, such that all waves are described as vectorial complex rays of five parameters: amplitude, phase, direction of propagation, polarization and curvature matrix of its wavefront. At each interaction of a ray with the surface of the object, the ray direction is determined by the vector Snell law, the divergence or convergence of the wave is calculated by the wavefront curvature (WFC) and the phase shift due to focal line is evaluated according to CWF. The total scattered field is the superposition of the complex amplitude of all orders of the rays emergent from the object. Thanks to the simple representation of the wave, this model is very suitable for the description of the interaction of an arbitrary wave with an object of smooth surface and complex shape. The applications of the model to 2D scattering of a plane wave by an infinite elliptical cylinder and a spheroid particle are presented. The particle can be absorbing and its refractive index can also be less than unity.
机译:已经开发出矢量复射线模型来描述任意形状的光滑表面物体的散射。在该模型中,将波的性质-波前的曲率整合到了射线模型中,从而将所有波描述为矢量复合射线,具有五个参数:波前的振幅,相位,传播方向,偏振和曲率矩阵。在射线与物体表面的每次交互作用下,射线的方向由矢量斯涅尔定律确定,波的发散或会聚由波前曲率(WFC)计算,并评估由焦线引起的相移根据CWF的说法。总散射场是从物体发出的所有阶次射线的复振幅的叠加。由于波浪的简单表示,该模型非常适合描述任意波浪与光滑表面和复杂形状物体的相互作用。提出了该模型在无限椭圆圆柱体和球状粒子二维平面波散射中的应用。颗粒可以被吸收,并且其折射率也可以小于1。

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