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用于折射率传感的高品质因数多重法诺共振

High-quality-factor multiple Fano resonances for refractive index sensing.

作者信息

Zhang Yuebian, Liu Wenwei, Li Zhancheng, Li Zhi, Cheng Hua, Chen Shuqi, Tian Jianguo

出版信息

Opt Lett. 2018 Apr 15;43(8):1842-1845. doi: 10.1364/OL.43.001842.

Abstract

We design and numerically analyze a high-quality (Q)-factor, high modulation depth, multiple Fano resonance device based on periodical asymmetric paired bars in the near-infrared regime. There are four sharp Fano peaks arising from the interference between subradiant modes and the magnetic dipole resonance mode that can be easily tailored by adjusting different geometric parameters. The maximal Q-factor can exceed 10 in magnitude, and the modulation depths ΔT can reach nearly 100%. Combining the narrow resonance line-widths with strong near-field confinement, we demonstrate an optical refractive index sensor with a sensitivity of 370 nm/RIU and a figure of merit of 2846. This study may provide a further step in sensing, lasing, and nonlinear optics.

摘要

我们设计并数值分析了一种基于近红外波段周期性非对称配对条的高品质因数、高调制深度、多法诺共振器件。由于亚辐射模式与磁偶极共振模式之间的干涉产生了四个尖锐的法诺峰,通过调整不同的几何参数可以轻松对其进行调控。最大品质因数在数值上可超过10,调制深度ΔT可接近100%。结合窄共振线宽与强近场限制,我们展示了一种光学折射率传感器,其灵敏度为370 nm/RIU,品质因数为2846。该研究可能为传感、激光和非线性光学领域的发展提供进一步的推动。

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