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金属二聚体的等吸收点光吸收:粒子间电磁耦合的影响。

Isosbestic light absorption by metallic dimers: effect of interparticle electromagnetic coupling.

作者信息

Ma L X, Wang C C

出版信息

Appl Opt. 2020 Feb 1;59(4):1028-1036. doi: 10.1364/AO.379021.

Abstract

Isosbestic plasmonic nanostructures, which feature an invariance of optical absorption and heat generation upon varying the incident light polarization, have broad application in many fields such as nanochemistry, optical nanoantennas, and microbubble formation. In this study, we focus on the isosbestic optical absorption by metallic dimers and systematically investigate the coupling between two interacting particles by using both the superposition T-matrix method and dipole approximation model. We observe that the interparticle coupling effects on particle absorption can be both positive and negative, compared to an isolated particle. Meanwhile, the optical absorption properties of spheres with small size parameters can realize more flexible control through changing the sphere size, interparticle distance, and incident light wavelength. For illuminations with incident light propagating perpendicularly to the line joining the centers of the two spheres, isosbestic conditions will be satisfied as long as the absorption efficiencies for transverse and longitudinal illuminations are equal. For transverse illuminations along the dimer axis, the ratio of absorption efficiency of the two metallic spheres presents the fluctuation change with the interparticle distance. Owing to the strong interparticle coupling effects, it even leads to the absorption efficiency of the far sphere being higher than that of the near sphere. Our results are aimed at expanding our understanding of the interparticle electromagnetic coupling effects on isosbestic light absorption in plasmonic nanoparticle systems.

摘要

等吸收等离子体纳米结构具有在改变入射光偏振时光吸收和热产生不变的特性,在纳米化学、光学纳米天线和微泡形成等许多领域有广泛应用。在本研究中,我们聚焦于金属二聚体的等吸收光吸收,并使用叠加T矩阵方法和偶极近似模型系统地研究两个相互作用粒子之间的耦合。我们观察到,与孤立粒子相比,粒子间耦合对粒子吸收的影响可能是正的也可能是负的。同时,通过改变球体尺寸、粒子间距离和入射光波长,小尺寸参数球体的光吸收特性可以实现更灵活的控制。对于入射光垂直于连接两个球体中心的直线传播的照明,只要横向和纵向照明的吸收效率相等,就会满足等吸收条件。对于沿二聚体轴的横向照明,两个金属球体的吸收效率之比随粒子间距离呈现波动变化。由于强烈的粒子间耦合效应,甚至会导致远球体的吸收效率高于近球体。我们的结果旨在扩展我们对等离子体纳米粒子系统中粒子间电磁耦合对等吸收光吸收影响的理解。

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