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Quantum dot-embedded microspheres for remote refractive index sensing

机译:量子点嵌入式微球用于远程折射率传感

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摘要

We present a refractometric sensor based on quantum dot-embedded polystyrene microspheres. Optical resonances within a microsphere, known as whispering-gallery modes (WGMs), produce narrow spectral peaks. For sensing applications, spectral shifts of these peaks are sensitive to changes in the local refractive index. In this work, two-photon excited luminescence from the quantum dots couples into several WGMs within the microresonator. By optimizing the detection area, the spectral visibility of the WGMs is improved. The spectral shifts are measured as the surrounding index of the refraction changes. The experimental sensitivity is about five times greater than that predicted by the Mie theory.
机译:我们提出了一种基于量子点嵌入式聚苯乙烯微球的折光仪。微球内的光学共振(称为耳语画廊模式(WGM))产生狭窄的光谱峰。对于传感应用,这些峰的光谱偏移对局部折射率的变化敏感。在这项工作中,来自量子点的双光子激发发光耦合到微谐振器内的几个WGM中。通过优化检测区域,提高了WGM的光谱可见性。光谱位移是随折射率的周围折射率变化而测量的。实验灵敏度大约是Mie理论预测的灵敏度的五倍。

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