Hexahedron core with sensor based photonic crystal fiber: An approach of design and performance analysis

A new structure of hexahedron core with the heptagonal shape of cladding regions based on photonic crystal fiber (Hx-PCF) is presented of this research work. The finite element method (FEM) and perfectly matched layers (PML) based COMSOL Multiphysics has been used to design this photonic crystal fib...

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Main Authors: Md. Selim Hossain, M.M. Kamruzzaman, Shuvo Sen, Mir Mohammad Azad, Mohammad Sarwar Hossain Mollah
Format: Article
Language:English
Published: Elsevier 2021-06-01
Series:Sensing and Bio-Sensing Research
Subjects:
THz
Online Access:http://www.sciencedirect.com/science/article/pii/S2214180421000313
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spelling doaj-a64683b5f8b94af2bd698f6d67fda2b42021-05-28T05:01:53ZengElsevierSensing and Bio-Sensing Research2214-18042021-06-0132100426Hexahedron core with sensor based photonic crystal fiber: An approach of design and performance analysisMd. Selim Hossain0M.M. Kamruzzaman1Shuvo Sen2Mir Mohammad Azad3Mohammad Sarwar Hossain Mollah4Department of Computing and Information System (CIS), Daffodil International University, Dhaka, BangladeshDepartment of Computer Science, College of Computer and Information Sciences, Jouf University, Sakakah, Saudi ArabiaDepartment of Information and Communication Technology (ICT), Mawlana Bhashani Science and Technology University (MBSTU), Santosh, Tangail 1902, Bangladesh; Corresponding author at: Mawlana Bhashani Science and Technology University, Santosh, Tangail 1902, Bangladesh.Department of Computer Science and Engineering, Khwaja Yunus Ali University, Enayetpur, Sirajganj 6751, BangladeshDepartment of Computing and Information System (CIS), Daffodil International University, Dhaka, BangladeshA new structure of hexahedron core with the heptagonal shape of cladding regions based on photonic crystal fiber (Hx-PCF) is presented of this research work. The finite element method (FEM) and perfectly matched layers (PML) based COMSOL Multiphysics has been used to design this photonic crystal fiber (Hx-PCF) with appropriate design parameters. The fiber discloses the high relative sensitivity (RS) which stand 86.32%, 88.36%, and 84.25%, and low confinement losses along with the value of 5.60 × 10–08, 6.60 × 10–08 dB/m, and 5.55 × 10–08 dB/m for three chemicals such as Ethanol (n = 1.354), Benzene (n = 1.366) and Water (n = 1.330), respectively at operating region of 1 THz (THz). Furthermore, some other optical characteristics such as an effective mode index (EMI), effective area (EA), total power fraction (TPF), effective material loss (EML), V-Parameter are also analyzed along through essential graphic outputs. So, the results show the strong potential of this suggested Hx-PCF fiber for bio-medical areas to detect biochemicals and also industrial areas for identifying many types of chemicals by sensing procedure in the terahertz (THz) waveguide system.http://www.sciencedirect.com/science/article/pii/S2214180421000313Hx-PCFTHzRelative sensitivityChemical sensorLow confinementCore material
collection DOAJ
language English
format Article
sources DOAJ
author Md. Selim Hossain
M.M. Kamruzzaman
Shuvo Sen
Mir Mohammad Azad
Mohammad Sarwar Hossain Mollah
spellingShingle Md. Selim Hossain
M.M. Kamruzzaman
Shuvo Sen
Mir Mohammad Azad
Mohammad Sarwar Hossain Mollah
Hexahedron core with sensor based photonic crystal fiber: An approach of design and performance analysis
Sensing and Bio-Sensing Research
Hx-PCF
THz
Relative sensitivity
Chemical sensor
Low confinement
Core material
author_facet Md. Selim Hossain
M.M. Kamruzzaman
Shuvo Sen
Mir Mohammad Azad
Mohammad Sarwar Hossain Mollah
author_sort Md. Selim Hossain
title Hexahedron core with sensor based photonic crystal fiber: An approach of design and performance analysis
title_short Hexahedron core with sensor based photonic crystal fiber: An approach of design and performance analysis
title_full Hexahedron core with sensor based photonic crystal fiber: An approach of design and performance analysis
title_fullStr Hexahedron core with sensor based photonic crystal fiber: An approach of design and performance analysis
title_full_unstemmed Hexahedron core with sensor based photonic crystal fiber: An approach of design and performance analysis
title_sort hexahedron core with sensor based photonic crystal fiber: an approach of design and performance analysis
publisher Elsevier
series Sensing and Bio-Sensing Research
issn 2214-1804
publishDate 2021-06-01
description A new structure of hexahedron core with the heptagonal shape of cladding regions based on photonic crystal fiber (Hx-PCF) is presented of this research work. The finite element method (FEM) and perfectly matched layers (PML) based COMSOL Multiphysics has been used to design this photonic crystal fiber (Hx-PCF) with appropriate design parameters. The fiber discloses the high relative sensitivity (RS) which stand 86.32%, 88.36%, and 84.25%, and low confinement losses along with the value of 5.60 × 10–08, 6.60 × 10–08 dB/m, and 5.55 × 10–08 dB/m for three chemicals such as Ethanol (n = 1.354), Benzene (n = 1.366) and Water (n = 1.330), respectively at operating region of 1 THz (THz). Furthermore, some other optical characteristics such as an effective mode index (EMI), effective area (EA), total power fraction (TPF), effective material loss (EML), V-Parameter are also analyzed along through essential graphic outputs. So, the results show the strong potential of this suggested Hx-PCF fiber for bio-medical areas to detect biochemicals and also industrial areas for identifying many types of chemicals by sensing procedure in the terahertz (THz) waveguide system.
topic Hx-PCF
THz
Relative sensitivity
Chemical sensor
Low confinement
Core material
url http://www.sciencedirect.com/science/article/pii/S2214180421000313
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