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A Solution of Scattered Field of Particle in Electromagnetic Beam Based on Beam Series Expansion

机译:基于束级数展开的电磁束中粒子散射场的求解

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摘要

Based on the orthogonalities among the spherical vector wave functions, the expressions of scattering fields are developed as the particle being irradiated by the zeroth-order field and the first-order fields of x, y, and z. A general relation between the expansion coefficients of scattering field and incident field is presented. With the example of the elliptical beam, the scattering property of a particle in beam is investigated. Upon analyzing of the effects of the beam waist, irradiating distance, etc., on scattering property, the validity of the algorithm used is demonstrated. The results show that the beam waist may improve the particle's identification property and the particle has a strong scattering property in both forward and backward directions. The method used is simple and provides a new way for investigating the scattering fields from particles in electromagnetic beams.
机译:基于球面矢量波函数之间的正交性,当x,y和z的零阶场和一阶场被粒子照射时,散射场的表达式得以发展。给出了散射场和入射场的膨胀系数的一般关系。以椭圆光束为例,研究了粒子在光束中的散射特性。通过分析束腰,辐照距离等对散射特性的影响,证明了所用算法的有效性。结果表明,束腰可以改善颗粒的识别性能,并且颗粒在向前和向后方向都具有很强的散射性能。所使用的方法简单,为研究电磁束中粒子的散射场提供了一种新方法。

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