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Dynamically Modulating Plasmonic Field by Tuning the Spatial Frequency of Excitation Light

机译:通过调整激发光的空间频率动态调制等离子体场

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摘要

Based on the Fourier transform (FT) of surface plasmon polaritons (SPPs), the relation between the displacement of the plasmonic field and the spatial frequency of the excitation light is theoretically established. The SPPs’ field shifts transversally or longitudinally when the spatial frequency components or are correspondingly changed. The SPPs’ focus and vortex field can be precisely located at the desired position by choosing the appropriate spatial frequency. Simulation results are in good agreement with the theoretical analyses. Dynamically tailoring the plasmonic field based on the spatial frequency modulation can find potential applications in microparticle manipulation and angular multiplexed SPP focusing and propagation.
机译:基于表面等离子体极性恒星(SPP)的傅里叶变换(FT),理论上建立了等离子体场的位移与激发光的空间频率之间的关系。当空间频率分量或相应地改变时,SPPS的场横向地或纵向移动。通过选择合适的空间频率,可以精确地位于所需位置的SPPS的聚焦和涡旋场。仿真结果与理论分析吻合良好。基于空间频率调制动态定制等离子体场可以在微粒操作和角度复用SPP聚焦和传播中找到潜在的应用。

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