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首页> 外文期刊>IEEE sensors journal >Crystalline MgF2 Whispering Gallery Mode Resonators as Optical Refractometric Sensors With Ultra-High Improved Sensitivity
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Crystalline MgF2 Whispering Gallery Mode Resonators as Optical Refractometric Sensors With Ultra-High Improved Sensitivity

机译:晶体MGF2次耳机模式谐振器作为光学折射测量传感器,具有超高度提高的灵敏度

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In this work, we theoretically show a high sensitivity refractometric sensor based on whispering gallery mode (WGM) cylindrical resonators made of magnesium fluoride (MgF2). This crystalline material has a refractive index (RI) which is only slightly more than that of the water (Delta n similar to 0.05 refractive index unit (RIU)). This causes more evanescent field depth of a WGM resonance in an aqueous environment, which makes it a promising candidate for sensing applications. For analysis of propagated WGM resonances, we have used a verified approach based on Airy approximations, which describes an analytical form of WGM resonance wavelengths in the cylindrical resonators. The ultra-high bulk refractive index sensitivity (S) of 780.61 nm/RIU, is obtained with employing the fifth radial order of a WGM with transverse magnetic (TM) polarization and lambda = 795 nm. This parameter shows an improvement factor of >= 2 times, compared with a state-of-the-art SOI ring resonator-based biosensor with a similar radius, reported lately. These results demonstrate the potential of the MgF2 cylindrical resonator-based refractometric sensor as a feasible alternative platform for manufacturing high-performance photonics sensors with vital biological applications.
机译:在这项工作中,我们理论上显示了一种基于氟化镁(MGF2)制成的耳语廊道模式(WGM)圆柱形谐振器的高灵敏度折射计传感器。该结晶材料具有折射率(RI),其仅略高于水(类似于0.05折射率单元(RIU))的折射率(ΔN)。这导致水环境中WGM共振的更多渐变场深度,这使其成为传感应用的有希望的候选者。为了分析传播的WGM共振,我们使用了基于通风近似的经过验证的方法,该方法描述了圆柱形谐振器中的WGM共振波长的分析形式。利用横向磁性(TM)极化和Lambda = 795nm,获得780.61nm / Riu的超高块折射率敏感性为780.61nm / Riu。该参数显示出> = 2次的改进因子,与最新的基于半径的基于状态的SOI环谐振器的生物传感器相比,并最近报道。这些结果证明了基于MGF2圆柱形谐振器的折射计传感器作为制造具有重要生物应用的高性能光子传感器的可行替代平台。

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