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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Optimum Surface Plasmon Excitation and Propagation on Conductive Two-Dimensional Materials and Thin Films
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Optimum Surface Plasmon Excitation and Propagation on Conductive Two-Dimensional Materials and Thin Films

机译:导电二维材料和薄膜上的最佳表面等离激元激发和传播

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摘要

The surface conductivity of two-dimensional (2-D) materials and thin conductive films is considered for surface plasmon (SP) excitation and propagation. It is shown that an ideal surface conductivity exists to maximize the SP field at a given position, based on a tradeoff relating to propagation loss and near-field excitation amplitude associated with the local density of photonic states. Dispersionless and Drude dispersion models are considered, as well as the effect of interband transitions. Simple formulas are presented to obtain a maximal SP field at a given distance from a canonical source. Examples are shown for graphene and thin metal films, and a discussion of the competition between propagation loss and SP excitation is provided.
机译:二维(2-D)材料和薄导电膜的表面电导率被认为用于表面等离子体激元(SP)的激发和传播。结果表明,存在一个理想的表面电导率,可以根据与光子态局部密度相关的传播损耗和近场激发幅度的权衡取舍,从而在给定位置最大化SP场。考虑了无色散模型和德鲁德色散模型,以及带间过渡的影响。给出了简单的公式来获得距规范源给定距离的最大SP场。给出了石墨烯和金属薄膜的例子,并讨论了传播损耗和SP激发之间的竞争。

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