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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Asymmetrical microring resonator based on whispering gallery modes for the detection of glucose concentration
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Asymmetrical microring resonator based on whispering gallery modes for the detection of glucose concentration

机译:基于耳语型孔孔浓度检测的不对称微管谐振器

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摘要

The optical resonator based on whispering gallery modes (WGMs) was widely studied due to its application potential in many fields. The novel asymmetrical microring resonator was proposed and investigated numerically using finite-difference time-domain (FDTD) method in this paper. The asymmetry of the asymmetrical microring resonator structure was reflected in the material and the structure of the microring resonator. The Q factor of the proposed asymmetrical microring, which was a significant parameter to measure the performance of microresonators, was more than five times of conventional microring resonator while maintaining the same sensitivity. The simulation verified that the structure can be applied to the detection of glucose solution concentration. This provided the potential for high-performance microring resonator to integrate on chip-scale devices for biosensing.
机译:由于其在许多领域中的应用势,基于耳语廊道模式(WGMS)的光学谐振器被广泛研究。 在本文中使用有限差差时域(FDTD)方法进行了新的非对称微管谐振器并在数值上进行研究。 非对称微管谐振器结构的不对称反射在材料和结构的结构中。 所提出的不对称微管的Q因子,这是测量微谐振器性能的重要参数,在传统微管谐振器的同时大于5次,同时保持相同的灵敏度。 模拟验证了该结构可以应用于葡萄糖溶液浓度的检测。 这提供了高性能微管谐振器的潜力,用于集成在用于生物传感的芯片级装置上。

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