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White nanolight source for optical nanoimaging

机译:用于光学纳米瘤的白色纳米型源

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Nanolight sources, which are based on resonant excitation of plasmons near a sharp metallic nanostructure, have attracted tremendous interest in the vast research fields of optical nanoimaging. However, being a resonant phenomenon, this ideally works only for one wavelength that resonates with the plasmons. Multiple wavelengths of light in a broad range confined to one spot within a nanometric volume would be an interesting form of light, useful in numerous applications. Plasmon nanofocusing can generate a nanolight source through the propagation and adiabatic compressions of plasmons on a tapered metallic nanostructure, which is independent of wavelength, as it is based on the propagation, rather than resonance, of plasmons. Here, we report the generation of a white nanolight source spanning over the entire visible range through plasmon nanofocusing and demonstrate spectral bandgap nanoimaging of carbon nanotubes. Our experimental demonstration of the white nanolight source would stimulate diverse research fields toward next-generation nanophotonic technologies.
机译:纳米光源,基于尖锐金属纳米结构附近的等离子体的共振激发,引起了对光学纳米瘤的巨大研究领域的巨大兴趣。然而,作为共振现象,这理想地仅适用于与等离子体共振的一个波长。在纳米体积内限制在宽范围内的宽范围内的多个光线将是一种有趣的光形式,可用于许多应用。等离子体纳米焦可以通过锥形金属纳米结构上的等离子体的繁殖和绝热性压缩来产生纳米圆锥源,其与波长无关,因为它基于繁殖,而不是振动等离子体。在这里,我们通过等离子体纳米焦和证明碳纳米管的光谱带隙纳米谱纳米立管的碳纳米管的光谱带隙纳米纳米立管的纳米纳米纳米纳米纳米谱跨越整个可见范围的白色纳米力源的产生。我们的白色纳米力源的实验示范将刺激不同的研究领域,朝着下一代纳米光电技术。

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