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Analysis and Optimum Design of Hybrid Plasmonic Slab Waveguides

机译:等离子体等离子体平板波导的分析与优化设计

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摘要

Propagation properties of hybrid plasmonic slab waveguides are studied in detail using transfer matrix method considering structural and material aspects. Hybrid metal-insulator, hybrid metal-insulator-metal, and hybrid insulator-metal-insulator waveguides are considered. Propagation length (L_p), spatial length (L_s), and mode length (L_m) are utilized as three common figures of merit to compare and optimize the waveguides according to the layer thicknesses and metal/dielectric materials. The effect of constituting materials including metals (such as silver, gold, copper, and aluminum) and dielectrics (common dielectric materials used in photonic integrated circuit technologies such as silicon and silicon compounds, III-V compounds, and polymers) are discussed. It is found that hybrid waveguides are partially to completely superior to conventional plasmonic waveguides, providing a better balance between confinement and loss.
机译:考虑结构和材料方面,采用传递矩阵法详细研究了混合等离子体激元平板波导的传输特性。考虑了混合金属绝缘体,混合金属绝缘体金属和混合绝缘体金属绝缘体波导。传播长度(L_p),空间长度(L_s)和模式长度(L_m)被用作三个共同的品质因数,以根据层厚度和金属/电介质材料比较和优化波导。讨论了构成材料(包括金属(例如银,金,铜和铝)和电介质(用于光子集成电路技术的常用电介质材料,例如硅和硅化合物,III-V化合物和聚合物)的影响。发现混合波导在某种程度上完全优于常规等离子波导,在限制和损耗之间提供了更好的平衡。

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