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Ultrasensitive Sizing Sensor for a Single Nanoparticle in a Hybrid Nonlinear Microcavity

机译:混合非线性微腔中单个纳米粒子的超敏感尺寸传感器

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摘要

We propose a potentially practical scheme for realizing ultrasensitive size sensor of a single metallic nanoparticles (MNP) in a hybrid nonlinear microcavity. This is achieved by exploiting a well-established microcavity-engineered plasmonic resonance, where a degenerate parametric amplifier (DPA) is embedded into the microcavity driven by a strong pump field and a weak probe pulse. It is shown that the transmission spectrum of the probe pulse exihibits a two-peak splitting and the splitting width depends on the radius. The radius of a single MNP can be inferred from the transmission spectrum by monitoring the width between two peaks. Using experimentally achievable parameters, we identify the detection sensitivity of the sensor can reach approximately 0.198 THz/nm for detecting and sizing of individual MNPs as small as 10 nm in radius.
机译:我们提出了一种用于在杂交非线性微腔中实现单个金属纳米颗粒(MNP)的超敏尺寸传感器的潜在实用方案。 这是通过利用良好的微腔工程改造的等离子体共振来实现的,其中将退化的参数放大器(DPA)嵌入由强泵场和弱探针脉冲驱动的微腔中。 结果表明,探针脉冲的透射光谱赋予双峰分裂,分裂宽度取决于半径。 通过监视两个峰之间的宽度,可以从传输光谱从透射光谱推断出单个MNP的半径。 使用实验可实现的参数,我们识别传感器的检测灵敏度可以达到大约0.198至NM,用于在半径中检测和施加单个MNP的单个MnPS,尺寸。

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