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非绝热锥形光纤与微谐振器耦合中的增强型法诺共振。

Enhanced Fano resonance in a non-adiabatic tapered fiber coupled with a microresonator.

作者信息

Zhang Kun, Wang Yue, Wu Yi-Hui

出版信息

Opt Lett. 2017 Aug 1;42(15):2956-2959. doi: 10.1364/OL.42.002956.

Abstract

We achieved enhanced Fano resonance by coupling a bottle resonator with a special non-adiabatic tapered fiber, where there is a high intensity distribution ratio between high-order and fundamental modes in the tapered region, as well as single mode propagation in the waist region. The resonance line shape is theoretically proved to be related to the intensity distribution ratio of the two fiber modes and their phase shift. An enhanced Fano line shape with an extinction ratio over 15 dB is experimentally reached by improving the intensity distribution ratio and tuning the phase shift. The results can remarkably improve the sensitivity of whispering-gallery mode microresonators in the field of optical sensing.

摘要

我们通过将瓶形谐振器与一种特殊的非绝热锥形光纤耦合实现了增强的法诺共振,在该锥形光纤的锥形区域中高阶模与基模之间存在较高的强度分布比,并且在腰部区域为单模传播。从理论上证明了共振线形状与两种光纤模式的强度分布比及其相移有关。通过改善强度分布比并调整相移,在实验上实现了消光比超过15 dB的增强法诺线形状。这些结果可以显著提高光学传感领域中回音壁模式微谐振器的灵敏度。

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