Finite Element Method Based Design Analysis of Internal Coated and External Coated PCF Temperature Sensor

Md. Abu Bakar Siddik, Md. Selim Hossain, A. Paul, Md. M. Rahman, Md. Hassanul Karim Roni, Kisalaya Chakrabatri
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引用次数: 1

Abstract

In this paper, we demonstrate and evaluate the performance of air filled spiral design photonic crystal fiber (PCF) temperature sensor and double core PCF based temperature sensor. In the first design, selective air holes are filled by temperature sensitive liquid and coated with gold layer to improve the performance of the sensor. In the second design, the high temperature coefficient liquid and plasmonic material are deposited outside portion of the double core PCF to make the fabrication easier. Besides, the coupling phenomenon is studied. The Matlab environment as well as the finite element method (FEM) are utilized to demonstrate the sensor performance. Variation of temperature leads different loss spectra that has been analyzed. The computer simulation result indicate that the obtained wavelength sensitivity of the air filled spiral PCF is as high as 585 pm/°C for y-polarization light and for dual core PCF the sensitivity is increased up to 970 pm/°C and 1075 pm/°C for x and y-polarized light, respectively for wide detection range of temperature 0°C to 80°C. In addition, the variation of structural parameter such as metal thickness and air holes are investigated on the performance of the sensor sensitivity. Considering high sensitivity and low fabrication complexity, the dual core PCF temperature sensor may be a better option to monitor or check the temperature of manufacturing industry, medical environment, transformer oil, battery of electric vehicles and so on.
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基于有限元法的内涂覆和外涂覆PCF温度传感器设计分析
本文对气动螺旋设计光子晶体光纤(PCF)温度传感器和基于双芯PCF的温度传感器的性能进行了论证和评价。在第一种设计中,在选择性的空气孔中填充温度敏感液体,并涂上金层,以提高传感器的性能。在第二种设计中,高温系数液体和等离子体材料沉积在双芯PCF的外部,使制造更容易。此外,还对耦合现象进行了研究。利用Matlab环境和有限元方法对传感器的性能进行了验证。温度的变化导致了不同的损耗谱。计算机仿真结果表明,在0 ~ 80℃的宽探测范围内,充气螺旋PCF对y偏振光的灵敏度高达585 pm/°C,双芯PCF对x和y偏振光的灵敏度分别提高到970 pm/°C和1075 pm/°C。此外,研究了金属厚度和气孔等结构参数的变化对传感器灵敏度的影响。双芯PCF温度传感器具有高灵敏度和低制造复杂度的特点,可能是监测或检查制造业、医疗环境、变压器油、电动汽车电池等温度的较好选择。
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