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Design and optimization of photonic crystal fiber based sensor for gas condensate and air pollution monitoring

机译:基于光子晶体光纤的气体凝结和空气污染监测传感器的设计与优化

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In this paper, a hexagonal shape photonic crystal fiber (H-PCF) has been proposed as a gas sensor of which both micro-structured core and cladding are organized by circular air cavities. The reported H-PCF has a single layer circular core which is surrounded by a five-layer hexagonal cladding. The overall pretending process of the H-PCF is completed by using a full vectorial finite element method (FEM) with perfectly matched layer (PML) boundary condition. All geometrical parameters like diameters and pitches of both core and cladding regions have fluctuated with an optimized structure. After completing the numerical analysis, it is clearly visualized that the proposed H-PCF exhibits high sensitivity with low confinement loss. The investigated results reveal the relative sensitivity of 56.65% and confinement loss of 2.31×10-5 dB/m at the 1.33-μm wavelength. Moreover, effective area, nonlinearity, and V-parameter of the suggested PCF are also briefly described.
机译:在本文中,已经提出了六边形形状的光子晶体光纤(H-PCF)作为气体传感器,其微结构化的纤芯和包层都由圆形的气孔组成。报道的H-PCF具有单层圆形芯,被五层六边形包层围绕。通过使用具有完美匹配层(PML)边界条件的全矢量有限元方法(FEM),可以完成H-PCF的整个伪装过程。所有几何参数(如纤芯和包层区域的直径和间距)都随着优化的结构而波动。完成数值分析后,可以清楚地看到拟议的H-PCF具有高灵敏度和低限制损耗。研究结果表明,在1.33μm波长处,相对灵敏度为56.65%,限制损耗为2.31×10-5 dB / m。此外,还简要介绍了建议的PCF的有效面积,非线性和V参数。

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