Design a Photonic Crystal iber for Zinc-Cadmium Detecting Using Comsol Multiphysics

Omer S. Hassan, B. Mahdi, R. Al-azawi, S. R. Tahhan
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Abstract

In this study, a sensor application based on the Mach-Zehnder modal interferometer MZI were employed to detect changes in the concentration values of heavy metals (zinc, cadmium). The Mach-Zehnder modal interferometer was used in all three applications. The basic structure of the sensor was implemented by the use of fusion splice PCF with a 2 cm length between two (SMF-25). At the fusion splice location, the air holes were completely compressed, allowing the core and cladding modes to be coupled and recombined with one another. The sensor immersed in a solution at different concentration levels of ranges (1-3,5,7-9) %. The Comsol Multiphysics (5.4v) program, was used to design the Photonic crystal fiber and test it with different concentrations of a mixture of zinc and cadmium. The sensitivity obtained was (78.02%).
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利用Comsol多物理场设计用于锌镉检测的光子晶体光纤
本研究采用基于Mach-Zehnder模态干涉仪MZI的传感器应用,检测重金属(锌、镉)的浓度值变化。在这三种应用中都使用了马赫-曾德尔模态干涉仪。传感器的基本结构是采用长度为2 cm的融合拼接PCF (SMF-25)实现的。在熔接位置,空气孔被完全压缩,允许芯和包层模式相互耦合和重新组合。将传感器浸入不同浓度(1-3,5,7-9)%的溶液中。使用Comsol Multiphysics (5.4v)程序设计光子晶体光纤,并在不同浓度的锌和镉混合物中对其进行测试。灵敏度为78.02%。
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