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Light Concentration by Metal-Dielectric Micro-Resonators for SERS Sensing

机译:金属介电微谐振器对SERS传感的聚光

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摘要

Metal-dielectric microano-composites have surface plasmon resonances in visible and near-infrared domains. Excitation of coupled metal-dielectric resonances is also important. These different resonances can allow enhancement of the electromagnetic field at a subwavelength scale. Hybrid plasmonic structures act as optical antennae by concentrating large electromagnetic energy in micro- and nano-scales. Plasmonic structures are proposed for various applications such as optical filters, investigation of quantum electrodynamics effects, solar energy concentration, magnetic recording, nanolasing, medical imaging and biodetection, surface-enhanced Raman scattering (SERS), and optical super-resolution microscopy. We present the review of recent achievements in experimental and theoretical studies of metal-dielectric micro and nano antennae that are important for fundamental and applied research. The main impact is application of metal-dielectric optical antennae for the efficient SERS sensing.
机译:金属介电微/纳米复合材料在可见光和近红外区域具有表面等离子体共振。耦合金属介电共振的激发也很重要。这些不同的共振可以允许在亚波长范围内增强电磁场。混合等离激元结构通过在微米和纳米级集中大量电磁能来充当光学天线。提出了等离子体结构,用于各种应用,例如滤光器,量子电动力学效应研究,太阳能集中,磁记录,纳米激光,医学成像和生物检测,表面增强拉曼散射(SERS)和光学超分辨率显微镜。我们目前对金属-介电微纳米天线的实验和理论研究的最新成果进行回顾,这对基础和应用研究很重要。主要影响是应用金属介电光学天线进行有效的SERS传感。

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