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Optical Chirality of Time-Harmonic Wavefields for Classification of Scatterers

机译:散射体分类的时谐波波场的光学手性

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摘要

We derive expressions for the scattering, extinction and conversion of the chirality of monochromatic light scattered by bodies which are characterized by a T-matrix. In analogy to the conditions obtained from the conservation of energy, these quantities enable the classification of arbitrary scattering objects due to their full, i.e. either chiral or achiral, electromagnetic response. To this end, we put forward and determine the concepts of duality and breaking of duality symmetry, anti-duality, helicity variation, helicity annhiliation and the breaking of helicity annihilation. Different classes, such as chiral and dual scatterers, are illustrated in this analysis with model examples of spherical and non-spherical shape. As for spheres, these concepts are analysed by considering non-Rayleigh dipolar dielectric particles of high refractive index, which, having a strong magnetic response to the incident wavefield, offer an excellent laboratory to test and interpret such changes in the chirality of the illumination. In addition, comparisons with existing experimental data are made.
机译:我们推导了由以T-矩阵为特征的物体散射的单色光的手性的散射,消光和转换的表达式。类似于从能量守恒中获得的条件,这些量由于其完整的(即,手性或非手性的)电磁响应而使得能够对任意散射物体进行分类。为此,我们提出并确定了对偶性和对偶对称性,反对偶性,螺旋性变异,螺旋性iation灭和螺旋性ni灭的概念。在此分析中,使用球形和非球形形状的模型示例说明了不同类别,例如手性和双重散射体。对于球体,这些概念是通过考虑具有高折射率的非瑞利偶极电介质粒子来分析的,该粒子对入射波场具有强大的磁响应,从而为测试和解释照明的手征性变化提供了极好的实验室。此外,与现有的实验数据进行了比较。

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