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首页> 外文期刊>Sensing and Bio-Sensing Research >Hexagonal photonic crystal Fiber (H-PCF) based optical sensor with high relative sensitivity and low confinement loss for terahertz (THz) regime
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Hexagonal photonic crystal Fiber (H-PCF) based optical sensor with high relative sensitivity and low confinement loss for terahertz (THz) regime

机译:基于六边形光子晶体纤维(H-PCF)光学传感器,具有高相对灵敏度和太赫兹(THZ)制的低限制损失

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This paper presents an analysis on a hexagonal cladding with a rotated-hexa core in photonic crystal fiber (H-PCF) based optical sensor formation with simultaneously minimal confinement loss and higher sensitivity for chemical sensing functions. The numerical assessment of the designed structure is achieved with the procedure of finite element method (FEM) and perfectly matched layers (PML) boundary condition in the comsol multiphysics software tool. As per FEM numerical analysis, the proposed PCF sensor presents the extreme relative sensitivity at 81.46%, 82.26% and 79.22% for three chemicals at 1 terahertz (THz) such as Ethanol (n?=?1.354), Benzene (n?=?1.366) and Water (n?=?1.330), respectively. Moreover, at 1 terahertz (THz) the low confinement losses are 5.85?×?10sup?08/sup, 6.07?×?10sup?08/sup and 5.84?×?10sup?08/sup?dB/m for similar three chemicals. The effective area, the effective mode index and the total power fraction are also elaborately explained. Furthermore, we hope that our proposed structure can be operated intensely in the field of biomedical, bio-sensing experiments and industrial applications in terahertz (THz) waveguide technology.
机译:本文呈现了基于光子晶体纤维(H-PCF)光学传感器形成的旋转六角芯的六边形包层的分析,具有同时最小的限制损失和更高的化学传感功能的灵敏度。通过COMSOL多体软件软件工具中的有限元方法(FEM)和完美匹配的层(PML)边界条件,实现了设计结构的数值评估。根据有限元数分析,所提出的PCF传感器在1至14.46%,82.26%和79.22%的极端相对敏感性,如乙醇(n?= 1.354),苯(n?=? 1.366)和水分(n?=?1.330)。此外,在1太赫兹(THz),低限制损失为5.85?×10 Δ08,6.07?×10 Δ08和5.84?×10 ?08 ?db / m用于类似的三种化学品。还精心解释了有效面积,有效模式指标和总功率分数。此外,我们希望我们的拟议结构可以在太赫兹(Thz)波导技术的生物医学,生物传感实验和工业应用领域中强烈运行。

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