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Design and optimization of photonic crystal fiber for liquid sensing applications

机译:用于液体传感应用的光子晶体光纤的设计和优化

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This paper proposes a hexagonal photonic crystal fiber (H-PCF) structure with high relative sensitivity for liquid sensing; in which both core and cladding are microstructures. Numerical investigation is carried out by employing the full vectorial finite element method (FEM). The analysis has been done in four stages of the proposed structure. The investigation shows that the proposed structure achieves higher relative sensitivity by increasing the diameter of the innermost ring air holes in the cladding. Moreover, placing a single channel instead of using a group of tiny channels increases the relative sensitivity effectively. Investigating the effects of different parameters, the optimized structure shows significantly higher relative sensitivity with a low confinement loss.
机译:本文提出了一种六边形的光子晶体光纤(H-PCF)结构,具有较高的相对灵敏度,可用于液体传感。其中芯层和包层都是微结构。数值研究是通过采用全矢量有限元方法(FEM)进行的。在提议的结构的四个阶段中进行了分析。研究表明,所提出的结构通过增加包层中最里面的环形气孔的直径来获得更高的相对灵敏度。而且,放置单个通道而不是使用一组微小的通道可以有效地提高相对灵敏度。通过研究不同参数的影响,优化后的结构显示出相对较高的相对灵敏度,且限制损耗较低。

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