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中等散射角下单粒子负极化的解读。

Interpretation of single-particle negative polarization at intermediate scattering angles.

作者信息

Tyynelä Jani, Zubko Evgenij, Muinonen Karri, Videen Gorden

机构信息

Department of Physics, P.O. Box 64, FI-00014, University of Helsinki, Finland.

出版信息

Appl Opt. 2010 Oct 1;49(28):5284-96. doi: 10.1364/AO.49.005284.

Abstract

We study the interrelation of the internal field of irregular particles to the far-field scattering characteristics by modifying the internal field of dipole groups. In this paper, we concentrate on the longitudinal component, i.e., the internal-field component parallel to the incident wave vector. We use the discrete-dipole approximation to determine the internal field and switch off the longitudinal component from the dipoles that have the highest energy density above a preset cutoff value. We conclude that only a relatively small number of core dipoles, about 5% of all dipoles, contribute to the negative linear polarization at intermediate scattering angles. These core dipole groups are located at the forward part of the particles. The number of core dipoles in the group becomes greater as particle asphericity increases. We find that the interference between the scattered waves from the core dipole groups, which was studied previously for spherical particles, is preserved to a large extent for nonspherical particles.

摘要

我们通过修改偶极子组的内场来研究不规则粒子内场与远场散射特性之间的相互关系。在本文中,我们专注于纵向分量,即平行于入射波矢的内场分量。我们使用离散偶极近似来确定内场,并从能量密度高于预设截止值的偶极子中去除纵向分量。我们得出结论,只有相对较少数量的核心偶极子,约占所有偶极子的5%,在中间散射角处对负线性极化有贡献。这些核心偶极子组位于粒子的前部。随着粒子非球形度的增加,组内核心偶极子的数量会增多。我们发现,先前针对球形粒子研究的核心偶极子组散射波之间的干涉,在很大程度上对于非球形粒子也得以保留。

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