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Waveguide-Integrated Compact Plasmonic Resonators for On-Chip Mid-Infrared Laser Spectroscopy

机译:用于片上内红外激光光谱的波导集成的紧凑型等离子体谐振器

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The integration of nanoplasmonic devices with a silicon photonic platform affords a new approach for efficient light delivery by combining the high field enhancement of plasmonics and the ultralow propagation loss of dielectric waveguides. Such a hybrid integration obviates the need for a bulky free-space optics setup and can lead to fully integrated, on-chip optical sensing systems. Here, we demonstrate ultracompact plasmonic resonators directly patterned atop a silicon waveguide for mid-infrared spectroscopic chemical sensing. The footprint of the plasmonic nanorod resonators is as small as 2 mu m(2), yet they can couple with the mid-infrared waveguide mode efficiently. The plasmonic resonance is directly measured through the transmission spectrum of the waveguide with a coupling efficiency greater than 70% and a field intensity enhancement factor of over 3600 relative to the evanescent waveguide field intensity. Using this hybrid device and a tunable mid-infrared laser source, surface-enhanced infrared absorption spectroscopy of both a thin poly(methyl methacrylate) film and an octadecanethiol monolayer is successfully demonstrated.
机译:纳米等离子体激元器件与硅光子平台的整合通过组合等离子体的高场增强和介电波导的超低传播损耗得到高效的光递送的新方法。这样的混合集成消除了对大体积的自由空间光学设置的需要,并能导致完全集成的片上的光学感测系统。这里,我们证明超小型电浆共振器直接图案化的硅波导中红外光谱化学感测的顶上。等离子体激元纳米棒谐振器的占用面积小,为2微米(2),但它们可以夫妇与中红外波导模式有效。等离子共振通过具有耦合效率大于70%和超过3600相对于瞬逝波导的电场强度的场强增强因子波导的透射谱直接测得。使用该混合装置和可调的中红外激光源,一个薄的聚(甲基丙烯酸甲酯)膜和十八烷硫醇单层两者的表面增强红外吸收光谱法被成功地证明。

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