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Angular-modulated spatial distribution of ultrahigh-order modes assisted by random scattering

Angular-modulated spatial distribution of ultrahigh-order modes assisted by random scattering
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摘要 In designing an optical waveguide with metallic films on a nanometer scale, the random scattering by the natural roughness of the thin film is always ignored. In this paper, we demonstrate that for the ultrahigh-order modes(UOMs) in the symmetric metal cladding waveguide, such a scattering leads to drastic variations in their spatial distribution at different incident angles. Owing to the high mode density of the UOMs, the random scattering induced coupling can be easily related to different modes with different propagation directions or wavenumbers. At small incident angles, the intra-mode coupling dominates, which results in a spatial distribution in the form of concentric rings. At large incident angles, the inter-mode coupling plays the most important role and leads to an array-like pattern. Experimental evidence via optically trapped nanoparticles support the theoretical hypothesis. In designing an optical waveguide with metallic films on a nanometer scale, the random scattering by the natural roughness of the thin film is always ignored. In this paper, we demonstrate that for the ultrahigh-order modes(UOMs) in the symmetric metal cladding waveguide, such a scattering leads to drastic variations in their spatial distribution at different incident angles. Owing to the high mode density of the UOMs, the random scattering induced coupling can be easily related to different modes with different propagation directions or wavenumbers. At small incident angles, the intra-mode coupling dominates, which results in a spatial distribution in the form of concentric rings. At large incident angles, the inter-mode coupling plays the most important role and leads to an array-like pattern. Experimental evidence via optically trapped nanoparticles support the theoretical hypothesis.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第11期254-257,共4页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.11404092 and 11574072) the Natural Science Foundation of Jiangsu Province,China(Grant Nos.BK20140246 and BK20160417)
关键词 metallic waveguide random scattering optical trapping metallic waveguide random scattering optical trapping
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