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带非对称破缺的荧光回音壁模式微球中折射率传感的模式分裂。

Mode-Splitting for Refractive Index Sensing in Fluorescent Whispering Gallery Mode Microspheres with Broken Symmetry.

机构信息

School of Engineering, University of South Australia, Mawson Lakes, SA 5095, Australia.

出版信息

Sensors (Basel). 2018 Sep 7;18(9):2987. doi: 10.3390/s18092987.

Abstract

Whispering gallery mode (WGM) resonators have become increasingly diverse in terms of both architecture and applications, especially as refractometric sensors, allowing for unprecedented levels of sensitivity. However, like every refractometric sensor, a single WGM resonator cannot distinguish temperature variations from changes in the refractive index of the surrounding environment. Here, we investigate how breaking the symmetry of an otherwise perfect fluorescent microsphere, by covering half of the resonator with a high-refractive-index (RI) glue, might enable discrimination of changes in temperature from variations in the surrounding refractive index. This novel approach takes advantage of the difference of optical pathway experienced by WGMs circulating in different equatorial planes of a single microsphere resonator, which induces mode-splitting. We investigated the influence of the surrounding RI of the microsphere on mode-splitting through an evaluation of the sphere's WGM spectrum and quality factor (Q-factor). Our results reveal that the magnitude of the mode-splitting increases as the refractive index contrast between the high-refractive-index (RI) glue and the surrounding environment increases, and that when they are equal no mode-splitting can be seen. Investigating the refractive index sensitivity of the individual sub modes resulting from the mode-splitting unveils a new methodology for RI sensing, and enables discrimination between surrounding refractive index changes and temperature changes, although it comes at the cost of an overall reduced refractive index sensitivity.

摘要

whispering gallery mode (WGM) 谐振器在结构和应用方面变得越来越多样化,特别是作为折射率传感器,实现了前所未有的灵敏度水平。然而,与每个折射率传感器一样,单个 WGM 谐振器无法区分周围环境折射率变化与温度变化。在这里,我们研究了通过用高折射率 (RI) 胶覆盖谐振器的一半来打破原本完美的荧光微球的对称性,如何能够区分温度变化和周围折射率的变化。这种新方法利用了在单个微球谐振器的不同赤道平面中循环的 WGM 经历的光程差,从而引起模式分裂。我们通过评估球体的 WGM 光谱和品质因数 (Q 因子) 来研究微球周围 RI 对模式分裂的影响。我们的结果表明,模式分裂的幅度随着高折射率 (RI) 胶和周围环境之间的折射率对比度的增加而增加,并且当它们相等时,不会出现模式分裂。研究由模式分裂产生的各个子模式的折射率灵敏度揭示了一种新的折射率传感方法,并能够区分周围折射率变化和温度变化,尽管这是以整体折射率灵敏度降低为代价的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2902/6164521/d6d75ee989b3/sensors-18-02987-g001.jpg

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