首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >High-sensitivity refractometric sensing with an indirectly coupled active and passive microresonator-waveguide system
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High-sensitivity refractometric sensing with an indirectly coupled active and passive microresonator-waveguide system

机译:具有间接耦合的主动和无源微谐振器 - 波导系统的高灵敏度折射测量感测

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摘要

We investigate high-sensitivity refractometric sensing with indirectly coupled active and passive optical microresonators mediated by drop-filter waveguides. It is shown that the line shape and amplitude of power reflection and transmission spectra are relevant with both phase delay and gain of microresonators, and high-sensitivity refractometric sensing may be realizable with three enhancement mechanisms, i.e., phase delay-induced sharp Fano spectra, gain-induced narrow-linewidth Lorentzian spectra, and exceptional points (EPs). Between the former two enhancement mechanisms, the competitive relationship, which is determined by the interplay of phase delay and gain, exists. The system could be tuned into the vicinity of the EP by choosing appropriate phase delay and gain. As the system response to the slight change of external parameter is evidently benefiting from the critical behavior, ultrahigh-sensitivity refractometric sensing could be realizable due to the dynamical amplification effect. (C) 2020 Optical Society of America
机译:我们研究了高灵敏度折射测量感测,其间接耦合有源和无源光学微生物器由下落过滤器波导介导的。结果表明,功率反射和透射光谱的线形状和幅度与微谐振器的相位延迟和增益相关,并且可以用三个增强机构实现高灵敏度折射计感测,即相位延迟引起的尖锐扇形光谱,增益引起的狭窄线宽洛伦兹光谱和特殊点(EPS)。在前两种增强机制之间,存在由相位延迟和增益的相互作用决定的竞争关系。通过选择合适的阶段延迟和增益,系统可以调整为EP附近。随着系统对外部参数的微小变化的响应明显受益于临界行为,由于动态放大效果,超高敏感性折射测量感测可以可实现。 (c)2020美国光学学会

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