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用于牛奶传感的太赫兹波段基于环烯烃共聚物的轮状结构光子晶体光纤传感器

Wheel structured Zeonex-based photonic crystal fiber sensor in THz regime for sensing milk.

作者信息

Islam Md Aminul, Islam Mohammad Rakibul, Siraz Sadia, Rahman Muntaha, Anzum Mariea Sharaf, Noor Fateha

机构信息

Department of Electrical and Electronic Engineering, City University, Savar, Dhaka, Bangladesh.

Department of Electrical and Electronic Engineering, Islamic University of Technology, Gazipur, 1704 Bangladesh.

出版信息

Appl Phys A Mater Sci Process. 2021;127(5):311. doi: 10.1007/s00339-021-04472-2. Epub 2021 Apr 4.

Abstract

In this paper, a wheel structured Zeonex-based hexagonal packing photonic crystal fiber (PCF) sensor has been proposed for sensing camel milk with a refractive index of 1.3423 and cow milk with a refractive index of 1.3459. This sensor has been investigated for porosities of 85%, 90%, and 98% within a terahertz (THz) region ranging from 0.2 to 2.0 THz. At an operating frequency of 2 THz, this sensor has shown a maximum sensitivity of 81.16% and 81.32% for camel and cow milk, respectively. EML of 0.033013 cm and 0.03284 cm has been found for camel and cow milk, respectively, at the same operating conditions with negligible confinement losses of 8.675   10 cm 1.435   10 cm. Several other parameters, such as the effective area, flattened dispersion, and numerical aperture, have also been obtained during the investigation. Since considerable attention has not been given yet in detecting various types of dairy products using PCF terahertz sensors, this design will pave a whole new path in further implementing THz sensing in the dairy industry.

摘要

本文提出了一种基于轮状结构的环烯烃共聚物(Zeonex)的六边形堆积光子晶体光纤(PCF)传感器,用于检测折射率为1.3423的骆驼奶和折射率为1.3459的牛奶。该传感器在0.2至2.0太赫兹(THz)的太赫兹区域内对孔隙率分别为85%、90%和98%的情况进行了研究。在2太赫兹的工作频率下,该传感器对骆驼奶和牛奶的最大灵敏度分别为81.16%和81.32%。在相同的操作条件下,骆驼奶和牛奶的有效模场面积(EML)分别为0.033013厘米和0.03284厘米,限制损耗可忽略不计,分别为8.675×10⁻⁵厘米⁻¹和1.435×10⁻⁵厘米⁻¹。在研究过程中还获得了其他几个参数,如有效面积、平坦色散和数值孔径。由于在使用光子晶体光纤太赫兹传感器检测各类乳制品方面尚未得到足够的关注,该设计将为乳制品行业进一步实施太赫兹传感开辟一条全新的道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f913/8019529/b54bbcb937a3/339_2021_4472_Fig1_HTML.jpg

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