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Plasmonic Fabry-Perot cavity as platform to build nano-optical filters and sensors

机译:等离子体法布里-珀罗腔作为构建纳米光学滤光片和传感器的平台

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摘要

This work deals with the nano-optical version of a Fabry-Perot cavity. By exciting plasmon modes on the metallic nanoparticles in the cavity, optical power can be squeezed into subwavelength scale without scattering effects stemmed from diffraction. As suggested by our results, it surges feasible to use such structure as a building block for optical resonators at nanometer dimensions. Furthermore, the enhanced near-field provided by the plasmon modes yields a high-sensitive ultra-compact area, which meets potential applications for biochemical sensing.
机译:这项工作涉及法布里-珀罗腔的纳米光学版本。通过在腔体中的金属纳米粒子上激发等离激元模式,可以将光功率压缩到亚波长范围内,而不会产生衍射引起的散射效应。正如我们的结果所暗示的那样,使用这种结构作为纳米尺寸的光学谐振器的构件非常可行。此外,由等离激元模式提供的增强的近场产生了高灵敏度的超紧凑区域,满足了生化传感的潜在应用。

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