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Laser-tuned whispering gallery modes in a solid-core microstructured optical fibre integrated with magnetic fluids

机译:集成磁流体的实心微结构光纤中的激光调谐耳语通道模式

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摘要

A laser-assisted tuning method of whispering gallery modes (WGMs) in a cylindrical microresonator based on magnetic-fluids-infiltrated microstructured optical fibres (MFIMOFs, where MF and MOF respectively refer to magnetic fluid and microstructured optical fibre) is proposed, experimentally demonstrated and theoretically analysed in detail. The MFIMOF is prepared by infiltrating the air-hole array of the MOF using capillary action effect. A fibre-coupling system is set up for the proposed MFIMOF-based microresonator to acquire an extinction ratio up to 25 dB and a Q-factor as large as 4.0 × 104. For the MF-infiltrated MOF, the light propagating in the fibre core region would rapidly spread out and would be absorbed by the MF-rod array cladding to induce significant thermal effect. This has been exploited to achieve a WGM resonance wavelength sensitivity of 0.034 nm/mW, which is ~20 times higher than it counterpart without MF infiltration. The wavelength response of the resonance dips exhibit linear power dependence, and owing to such desirable merits as ease of fabrication, high sensitivity and laser-assisted tunability, the proposed optical tuning approach of WGMs in the MFIMOF would find promising applications in the areas of optical filtering, sensing, and signal processing, as well as future all-optical networking systems.
机译:提出了一种基于磁流体浸入的微结构光纤(MFIMOFs,其中MF和MOF分别指磁流体和微结构光纤)的圆柱形微谐振器中的耳语通道模式(WGM)的激光辅助调谐方法,并进行了实验证明和从理论上详细分析。 MFIMOF是通过利用毛细管作用效应渗透MOF的气孔阵列而制备的。针对所提出的基于MFIMOF的微谐振器建立了一个光纤耦合系统,以实现高达25 dB的消光比和高达4.0×10 4 的Q因子。对于MF渗透的MOF,在纤维芯区域传播的光将迅速散开并被MF棒阵列包层吸收,从而产生明显的热效应。已经利用它来实现WGM共振波长灵敏度为0.034 Wnm / mW,比没有MF渗透的WGM共振波长灵敏度高约20倍。谐振骤降的波长响应表现出线性功率依赖性,并且由于其易于制造,高灵敏度和激光辅助可调性等理想优点,在MFIMOF中提出的WGM的光学调谐方法将在光学领域中找到有希望的应用滤波,传感和信号处理以及未来的全光联网系统。

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