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Nanophotonic Ultrashort Coupler Based on Hybrid Plasmonic Waveguide With Lateral Subwavelength Grating

机译:侧向亚波长光栅的混合等离子体波纳米光子超短耦合器

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摘要

A nanophotonic vertical coupler with ultrashort coupling length based on hybrid plasmonic (HP) waveguide with a lateral subwavelength grating (LSG) is proposed. An ultrashort coupling length of 0.461 μm is achieved through the lateral resonances in the subwavelength grating. The combined effect of LSG and the metal layer sandwiched between the coupling dielectric-regions makes it possible to realize efficient coupling and low-loss guiding of hybrid modes with a propagation lengths of 123 and 53 μm, respectively, for odd and even modes. The vertical coupling influenced by the lateral resonances through LSG also exhibits broadband nature where the coupling length remains acceptably small and the coupling performance remains high over a broad range of wavelengths. The coupling performance of 192 and a low propagation loss of 0.035 dB/μm are reported with the analysis based on finite element method. LSG introduced into the HP waveguide is shown to provide multifold benefits of increased fabrication tolerance, enhanced coupling efficiency and expanded coupling regime.
机译:提出了一种基于具有侧面亚波长光栅(LSG)的混合等离子(HP)波导的超短耦合长度的纳米光子垂直耦合器。通过亚波长光栅中的横向共振,可以实现0.461μm的超短耦合长度。 LSG和夹在耦合介电区之间的金属层的组合效应使得可以实现奇数模式和偶数模式分别具有123和53μm传播长度的混合模式的有效耦合和低损耗引导。受通过LSG的横向共振影响的垂直耦合也表现出宽带特性,其中耦合长度保持在可接受的范围内,并且耦合性能在很宽的波长范围内保持很高。基于有限元方法的分析表明,耦合性能为192,传播损耗低至0.035 dB /μm。显示出引入到HP波导中的LSG具有多重优势,可提高制造公差,提高耦合效率并扩大耦合范围。

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