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Properties of the T matrix in the Rayleigh approximation

机译:瑞利近似中T矩阵的性质

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We have examined the properties of the T matrix in the Rayleigh approximation (i.e., in the electrostatic problem) for axisymmetric particles using an analog of the extended boundary condition method (EBCM). The T matrix can be constructed by two methods. In the first method, the field inside of the particle is initially determined and then the "scattered" field is found. In terms of the second approach, the problem is formulated straight for the scattered field. Theoretically, the two schemes are equivalent. Based on the refined analysis of a vast amount of numerical calculations for Chebyshev particles and pseudospheroids, it has been shown that, taking into account the influence of calculation errors, the second approach is much more efficient than the first one for determining the scattered field and the T matrix taking into account its symmetric character. Numerical investigations of the range of applicability of the EBCM have unambiguously confirmed theoretical inferences. Namely, the T matrix can be constructed by the EBCM only if there exists a nonempty intersection of analytical continuations of the expansions of the scattered and internal fields in terms of spherical functions. In other words, the radii of convergence of these expansions should satisfy the condition R (1) < R (2), which depends only on the particle shape.
机译:我们已经使用扩展边界条件方法(EBCM)的类似物检查了轴对称粒子在Rayleigh近似中(即在静电问题中)的T矩阵的特性。 T矩阵可以通过两种方法构造。在第一种方法中,首先确定粒子内部的场,然后找到“散射”场。就第二种方法而言,问题是直接针对散射场提出的。从理论上讲,这两种方案是等效的。基于对Chebyshev粒子和伪球体的大量数值计算的精细分析,结果表明,考虑到计算误差的影响,第二种方法比第一种方法在确定散射场方面效率更高。 T矩阵考虑到其对称性。对EBCM适用范围的数值研究已明确证实了理论推论。即,仅当存在散射场和内部场的扩展的球面函数的解析连续性的非空交集时,才可以由EBCM构造T矩阵。换句话说,这些膨胀的收敛半径应满足条件R(1)

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