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首页> 外文期刊>Karbala International Journal of Modern Science >Single-mode spiral shape fiber based liquid sensor with ultra-high sensitivity and ultra-low loss: Design and analysis
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Single-mode spiral shape fiber based liquid sensor with ultra-high sensitivity and ultra-low loss: Design and analysis

机译:具有超高灵敏度和超低损耗的单模螺旋形光纤液体传感器:设计与分析

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摘要

This paper represents a spiral photonic crystal fiber (S-PCF) based optical sensor which exhibits high relative sensitive as well as low confinement loss simultaneously. The proposed PCF contains ten arms as well as each arm consists of nine circular air holes that forms spiral shape and core is formatted with circular holes filled with ethanol. Various geometrical parameters including diameters and pitches of the suggested S-PCF are tuned with the most efficient structure applying the full vectorial finite element method (FEM). Overall outcomes satisfy O?+?E?+?S?+?C?+?L?+?U (range of 1.26–1.675?μm) electromagnetic (EM) bands. The?relative sensitivities of about 72.95%, 74.55% and 75.14% with ultra-low confinement loss of 1.85?×?10 ?10 ?dB/m, 4.62?×?10 ?11 ?dB/m and 6.35?×?10 ?11 ?dB/m are gained at the 1.33?μm wavelength for water (n?=?1.33), ethanol (n?=?1.354) and benzene (n?=?1.366) analytes respectively. In addition, effective area, non-linear coefficient and V-parameter are also examined. Finally, the inquiry procedure depicts that the proposed S-PCF is highly capable in not only sensing applications but also high data traffic transmission applications.
机译:本文介绍了一种基于螺旋光子晶体光纤(S-PCF)的光学传感器,该传感器同时具有较高的相对灵敏度以及较低的限制损耗。拟议的PCF包含十个臂,每个臂由九个形成螺旋形的圆形气孔组成,核心用填充有乙醇的圆形孔格式化。应用全矢量有限元方法(FEM),以最有效的结构调整各种几何参数,包括建议的S-PCF的直径和螺距。总体结果满足O?+?E?+?S?+?C?+?L?+?U(1.26-1.675?μm的范围)电磁(EM)频段。相对灵敏度约为72.95%,74.55%和75.14%,超低限制损耗为1.85?×?10?10?dB / m,4.62?×?10?11?dB / m和6.35?×?10对于水(n = 1.33),乙醇(n = 1.354)和苯(n = 1.366)分析物,在1.33μm波长处分别获得λ11dB / m。此外,还检查了有效面积,非线性系数和V参数。最后,查询过程描述了所提出的S-PCF不仅在传感应用中而且在高数据业务传输应用中都具有很高的能力。

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