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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Enhanced Raman scattering of single nanoparticles in a high- Q whispering-gallery microresonator
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Enhanced Raman scattering of single nanoparticles in a high- Q whispering-gallery microresonator

机译:高Q耳语画廊微谐振器中单个纳米颗粒的增强拉曼散射

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摘要

We study Raman scattering of single nanoparticles coupled to a high-Q whispering-gallery microresonator. It is found that cavity resonances greatly enhance the Raman signal, and the enhancement factor is as high as 10(8). Unlike the noncavity case, the signal power exhibits a nonmonotonic dependence on particle size, and it reaches the maximum when the Rayleigh scattering loss and the cavity intrinsic loss are comparable. We further analyze how the Raman signal intensity is influenced by different parameters including cavity quality factors and taper-cavity coupling strength. The detection limit of observing single-nanoparticle Raman signal is discussed finally. As a potential application, this mechanism may provide an alternative way to detect specific biological targets without the need of precovered biorecognitions.
机译:我们研究与高Q耳语画廊微谐振器耦合的单个纳米粒子的拉曼散射。发现腔共振极大地增强了拉曼信号,并且增强因子高达10(8)。与无腔情况不同,信号功率表现出对粒径的非单调依赖性,并且在瑞利散射损耗和腔固有损耗可比较时达到最大值。我们进一步分析拉曼信号强度如何受不同参数的影响,这些参数包括腔质量因数和锥腔耦合强度。最后讨论了观察单纳米粒子拉曼信号的检出限。作为一种潜在的应用,该机制可以提供一种无需预先发现的生物识别即可检测特定生物学目标的替代方法。

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