Relative humidity sensor based on a few-mode microfiber knot resonator by mitigating group index difference

D. A. Le, Seungmin Lee, Young-Geun Han
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引用次数: 6

Abstract

A few-mode microfiber knot resonator (FM-MKR) incorporating a polyvinyl alcohol (PVA) is investigated for measurement of relative humidity (RH). Two modes, such as HE11 and HE12, are excited and interfered in a nonadiabatically tapered structure of the single-mode fiber (SMF). After making a tie with the few-mode microfiber, the FM-MKR is fabricated. In the FM-MKR, two modes, such as HE11 and HE12, must be circulated within the optical knot and cross-coupled independently with a phase delay. By optimizing the diameter of the microfiber, the difference of group effective refractive indices between two modes is dramatically suppressed resulting in the improvement of RH sensitivity of the proposed FM-MKR.
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基于少模微光纤结谐振器的相对湿度传感器
研究了聚乙烯醇(PVA)微光纤结谐振器(FM-MKR)的相对湿度测量方法。在单模光纤(SMF)的非绝热锥形结构中,HE11和HE12两种模式被激发和干涉。在与少模超细光纤连接后,制作了FM-MKR。在FM-MKR中,HE11和HE12两种模式必须在光结内循环,并以相位延迟独立交叉耦合。通过优化超细光纤的直径,显著抑制了两种模式之间的群有效折射率差异,从而提高了FM-MKR的相对湿度灵敏度。
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