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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Transformations of spherical beam shape coefficients in generalized Lorenz-Mie theories through rotations of coordinate systems I. General formulation
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Transformations of spherical beam shape coefficients in generalized Lorenz-Mie theories through rotations of coordinate systems I. General formulation

机译:广义Lorenz-Mie理论中球坐标系形状系数通过坐标系统旋转的变换I.通用公式

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摘要

The generalized Lorenz-Mie theory in the strict sense describes the interaction between an illuminating arbitrary shaped beam and a homogeneous sphere characterized by its diameter d and its complex refractive index m. It relies on the method of separation of variables expressed in spherical coordinates. Other generalized Lorenz-Mie theories (for other kinds of scatterers) expressed in spherical coordinates are available too. In these theories, the illuminating beam is expressed by using expansions with expansion coefficients depending on some fundamental coefficients named beam shape coefficients, more specifically spherical beam shape coefficients. In this paper we present a general formulation for the transformation of spherical beam shape coefficients through rotations of coordinate systems.
机译:严格意义上的广义Lorenz-Mie理论描述了照亮的任意形状光束与以直径d和复折射率m为特征的均匀球之间的相互作用。它依赖于分离以球坐标表示的变量的方法。也可以使用以球坐标表示的其他广义Lorenz-Mie理论(用于其他类型的散射体)。在这些理论中,照明光束是通过使用具有膨胀系数的膨胀来表示的,膨胀系数取决于一些基本系数,称为光束形状系数,更具体地是球形光束形状系数。在本文中,我们提出了通过坐标系旋转来变换球面波束形状系数的一般公式。

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