Stable Fano-like plasmonic resonance: its impact on the reversal of far-and near-field optical binding force

被引:0
作者
Hamim Mahmud Rivy [1 ,2 ]
M R C Mahdy [1 ,3 ]
Nabila Masud [1 ]
Ziaur Rahman Jony [1 ]
Saikat Chandra Das [1 ]
机构
[1] Department of Electrical & Computer Engineering, North South University
[2] School of Electrical and Electronic Engineering, Nanyang Technological University
关键词
Fano resonance; optical binding force; Lorentz force; plasmonic; tetramer;
D O I
暂无
中图分类号
O53 [等离子体物理学];
学科分类号
070204 ;
摘要
Even for a 100 nm interparticle distance or a small change in particle shape,optical Fano-like plasmonic resonance mode usually vanishes completely.It would be remarkable if stable Fano-like resonance could somehow be achieved in distinctly shaped nanoparticles for more than 1 μm interparticle distance, which corresponds to the far electromagnetic field region.If such far-field Fano-like plasmonic resonance can be achieved,controlling the reversal of the far-field binding force can be attained,like the currently reported reversals for near-field cases.In this work,we have proposed an optical set-up to achieve such a robust and stable Fano-like plasmonic resonance, and comparatively studied its remarkable impact on controlling the reversal of near-and far-field optical binding forces.In our proposed set-up, the distinctly shaped plasmonic tetramers are half immersed(i.e.air-benzene) in an inhomogeneous dielectric interface and illuminated by?circular?polarized light.We have demonstrated significant differences between near- and far-field optical binding forces along with the Lorentz force field,which partially depends on the object’s shape.A clear connection is shown between the far-field binding force and the resonant modes,along with a generic mechanism to achieve controllable Fano-like plasmonic resonance and the reversal of the optical binding force in both far- and near-field configurations.
引用
收藏
页码:91 / 107
页数:17
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