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Optical near field imaging of localized surface plasmons modes in metallic nanostructures integrated on dielectric waveguides

机译:集成在介电波导上的金属纳米结构中局部表面等离振子模式的光学近场成像

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The study of surface plasmon-polaritons interactions in metallic nanostructures has been a topic of interest during last years due to their use in various areas such as the photonics, chemistry and biology. Example of use is found in biosensors for the efficient detection of biological analyte and in nanophotonic elements for on-chip photonics. Here, we study the interactions properties of localized surface plasmons in a hybrid waveguiding structure made of bi-dimensional array of gold nanowires vertically integrated on silicon-on-insulator waveguides across the near infrared spectrum. With the use of near-field scanning optical microscopy (NSOM) in perturbation mode, we qualitatively obtained the spectral response of such hybrid structure through intensity near field maps of the light propagation. These experimental results demonstrate that metallic nanostructures integrated on silicon are suitable for the development of localized surface plasmon integrated devices or metallic metamaterials.
机译:近年来,由于金属纳米结构中的表面等离振子-极化子相互作用在光子学,化学和生物学等领域的广泛应用,因此一直是人们关注的话题。在生物传感器中用于有效检测生物分析物的应用实例以及在片上光子学中的纳米光子元件中都有使用的例子。在这里,我们研究了混合波导结构中的局部表面等离子体激元的相互作用特性,该结构由金纳米线的二维阵列垂直集成在绝缘体上硅基波导上,构成了近红外光谱。通过在扰动模式下使用近场扫描光学显微镜(NSOM),我们通过光传播的强度近场图定性地获得了这种混合结构的光谱响应。这些实验结果表明,集成在硅上的金属纳米结构适用于局部表面等离子体激元集成器件或金属超材料的开发。

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