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Self-Assembly of Plasmonic Nanoantenna-Waveguide Structures for Subdiffractional Chiral Sensing

机译:基质纳米纳米纳瓦波导结构的自组装,用于分二聚体手性感

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摘要

Spin-momentum locking is a peculiar effect in the near-field of guided optical or plasmonic modes. It can be utilized to map the spinning or handedness of electromagnetic fields onto the propagation direction. This motivates a method to probe the circular dichroism of an illuminated chiral object. In this work, we demonstrate local, subdiffraction limited chiral coupling of light and propagating surface plasmon polaritons in a self-assembled system of a gold nanoantenna and a silver nanowire. A thin silica shell around the nanowire provides precise distance control and also serves as a host for fluorescent molecules, which indicate the direction of plasmon propagation. We characterize our nanoantenna-nanowire systems comprehensively through correlated electron microscopy, energy-dispersive X-ray spectroscopy, dark-field, and fluorescence imaging. Three-dimensional numerical simulations support the experimental findings. Besides our measurement of far-field polarization, we estimate sensing capabilities and derive not only a sensitivity of 1 mdeg for the ellipticity of the light field, but also find 10(3) deg cm(2)/dmol for the circular dichroism of an analyte locally introduced in the hot spot of the antenna-wire system. Thorough modeling of a prototypical design predicts on-chip sensing of chiral analytes. This introduces our system as an ultracompact sensor for chiral response far below the diffraction limit.
机译:自旋动量锁定是近场光学或等离子体模式中的一种特殊效应。它可以用来将电磁场的旋转或惯用手映射到传播方向上。这激发了一种探测被照亮的手性物体的圆二色性的方法。在这项工作中,我们展示了在金纳米天线和银纳米线的自组装系统中,光和传播的表面等离子体激元的局部、亚扩散限制的手征耦合。纳米线周围的一层薄薄的二氧化硅外壳提供了精确的距离控制,还充当荧光分子的主体,荧光分子指示等离子体传播的方向。我们通过相关电子显微镜、能量色散X射线光谱、暗场和荧光成像全面描述了我们的纳米天线纳米线系统。三维数值模拟支持实验结果。除了我们对远场极化的测量之外,我们还估计了传感能力,不仅推导出了光场椭圆度的1 mdeg灵敏度,还发现了天线-导线系统热点中局部引入的分析物圆二色性的10(3)deg cm(2)/dmol。原型设计的彻底建模预测了手性分析物的芯片传感。这将我们的系统介绍为一种超小型传感器,用于远低于衍射极限的手性响应。

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