Theoretical Investigation of a Long Period Grating Sensor Employing Multilayer Fiber Geometry

Pragya Mishra, Sachin Singh, P. Lohia, D. K. Dwivedi
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Abstract

A theoretical formulation of the long-period grating sensor is implemented with respect to efficient refractive indices of core and cladding. The obtained result is utilized further for determination of ERIs of core and cladding using graphical analytical method and multilayer fiber geometry. ERI values of primary guided core, bi and tri layer fiber geometry using MATLAB software. In the present paper effective refractive index of core and cladding for the two and three layers have been investigated. The cladding modes have also been calculated using Erdogan’s proposed three-layer geometry as well as two-layer graphical solution method. We have compared both the techniques, discussed the limitations of graphical solution method and the benefits of three-layer geometry.
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多层光纤几何结构长周期光栅传感器的理论研究
推导了长周期光栅传感器的核心和包层有效折射率的理论公式。所得结果进一步应用图形分析方法和多层纤维几何结构测定了芯层和包层的ERIs。利用MATLAB软件对初级导芯、双层和三层光纤几何形状进行ERI计算。本文研究了两层和三层光芯和包层的有效折射率。包层模式也使用埃尔多安提出的三层几何和两层图形解决方法进行了计算。我们比较了这两种技术,讨论了图形解法的局限性和三层几何的优点。
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来源期刊
Sensor Letters
Sensor Letters 工程技术-电化学
自引率
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审稿时长
6 months
期刊介绍: The growing interest and activity in the field of sensor technologies requires a forum for rapid dissemination of important results: Sensor Letters is that forum. Sensor Letters offers scientists, engineers and medical experts timely, peer-reviewed research on sensor science and technology of the highest quality. Sensor Letters publish original rapid communications, full papers and timely state-of-the-art reviews encompassing the fundamental and applied research on sensor science and technology in all fields of science, engineering, and medicine. Highest priority will be given to short communications reporting important new scientific and technological findings.
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