Martan T, Nemecek T, Komanec M, Ahmad R, Zvanovec S
Appl Opt. 2017 Mar 20;56(9):2388-2396. doi: 10.1364/AO.56.002388.
Detecting explosive, flammable, or toxic industrial liquids reliably and accurately is a matter of civic responsibility that cannot be treated lightly. Tapered optical fibers (TOFs) and suspended core microstructured optical fibers (SC MOFs) were separately used as sensors of liquids without being compared to each other. We present a highly sensitive time-stable TOF sensor incorporated in the pipeline system for the in-line regime of measurement. This paper is furthermore focused on the comparison of this TOF and SC MOF of similar parameters for the detection of selected liquids. A validated method that incorporates TOF and SC MOF of small core (waist) diameter for refractometric detection is presented. The principle of detection is based on the overlap of an enhanced evanescent wave with a liquid analyte that either fills the cladding holes of the SC MOF or surrounds the waist area of the TOF. Optical power within the evanescent wave for both sensing structures and selected liquid analytes is analyzed. Measurement results concerning TOF and SC MOF are compared. Calculations to ascertain the limit of detection (LOD) for each sensor and the sensitivity (S) to refractive indices of liquid analytes in the range of 1.4269 to 1.4361 were performed at a wavelength of 1550 nm with the lowest refractive index step of 0.0007. Results affirming that S=600.96 dB/RIU and LOD=0.0733 RIU for the SC MOF and S=1143.2 dB/RIU and LOD of 0.0026 RIU for the TOF sensor were achieved, clearly illustrating that TOF-based sensors can reach close to two times greater sensitivity and 30 times higher limit of detection. This paper extends the comparison of the fiber sensors by discussing the potential applications.
可靠且准确地检测爆炸性、易燃性或有毒工业液体是一项不可轻视的公民责任。锥形光纤(TOF)和悬浮芯微结构光纤(SC MOF)曾分别用作液体传感器,但未进行相互比较。我们展示了一种高度灵敏且时间稳定的TOF传感器,它被集成到管道系统中用于在线测量模式。本文还聚焦于对比这种TOF和具有相似参数的SC MOF对选定液体的检测情况。提出了一种经过验证的方法,该方法采用小芯(腰部)直径的TOF和SC MOF进行折射检测。检测原理基于增强消逝波与液体分析物的重叠,该液体分析物要么填充SC MOF的包层孔,要么环绕TOF的腰部区域。分析了两种传感结构以及选定液体分析物的消逝波内的光功率。比较了关于TOF和SC MOF的测量结果。在波长为1550 nm、最低折射率步长为0.0007的条件下,进行了计算以确定每个传感器的检测限(LOD)以及对1.4269至1.4361范围内液体分析物折射率的灵敏度(S)。结果表明,SC MOF的S = 600.96 dB/RIU且LOD = 0.0733 RIU,TOF传感器的S = 1143.2 dB/RIU且LOD为0.0026 RIU,清楚地表明基于TOF的传感器灵敏度可接近两倍且检测限高30倍。本文通过讨论潜在应用扩展了光纤传感器的比较。