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Strong coupling of diffraction coupled plasmons and optical waveguide modes in gold stripe-dielectric nanostructures at telecom wavelengths

机译:电信波长金条带介质纳米结构中衍射耦合等离子体和光波导模式的强耦合

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摘要

We propose a hybrid plasmonic device consisting of a planar dielectric waveguide covering a gold nanostripe array fabricated on a gold film and investigate its guiding properties at telecom wavelengths. The fundamental modes of a hybrid device and their dependence on the key geometric parameters are studied. A communication length of 250 μm was achieved for both the TM and TE guided modes at telecom wavelengths. Due to the difference between the TM and TE light propagation associated with the diffractive plasmon excitation, our waveguides provide polarization separation. Our results suggest a practical way of fabricating metal-nanostripes-dielectric waveguides that can be used as essential elements in optoelectronic circuits.
机译:我们提出了一种混合等离子体装置,其由覆盖在金膜上制造的金纳芯阵列的平面介电波导,并研究其在电信波长下的引导性能。研究了混合装置的基本模式及其对关键几何参数的依赖。对于电信波长的TM和TE引导模式,实现了250μm的通信长度。由于与衍射等离子体激发相关的TM和TE光传播之间的差异,我们的波导提供极化分离。我们的结果表明了制造金属纳米型介电波导的实用方式,其可以用作光电电路中的基本元件。

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