Design and analysis of a chemical sensing octagonal photonic crystal fiber (O-PCF) based optical sensor with high relative sensitivity for terahertz (THz) regime

This article represents a new structure of octagonal cladding with a rotated-hexa core in photonic crystal fiber (O-PCF) for chemical sensing application in the terahertz (THz) waveguide. The five layers octagonal shape in circular air holes of cladding region with two layers rotated-hexa shape in c...

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Main Authors: Md. Abdullah-Al-Shafi, Shuvo Sen
Format: Article
Language:English
Published: Elsevier 2020-08-01
Series:Sensing and Bio-Sensing Research
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214180420301057
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spelling doaj-970e434c3faf435cbde383e5ad95ad5c2020-11-25T03:42:24ZengElsevierSensing and Bio-Sensing Research2214-18042020-08-0129100372Design and analysis of a chemical sensing octagonal photonic crystal fiber (O-PCF) based optical sensor with high relative sensitivity for terahertz (THz) regimeMd. Abdullah-Al-Shafi0Shuvo Sen1Institute of Information Technology (IIT), University of Dhaka, Dhaka, Bangladesh; Corresponding author.Department of Information and Communication Technology (ICT), Mawlana Bhashani Science and Technology University (MBSTU), Santosh, Tangail 1902, BangladeshThis article represents a new structure of octagonal cladding with a rotated-hexa core in photonic crystal fiber (O-PCF) for chemical sensing application in the terahertz (THz) waveguide. The five layers octagonal shape in circular air holes of cladding region with two layers rotated-hexa shape in circular air holes of core area are proposed in this study. The mathematical analysis is achieved from the technique of perfectly matched layers (PML) boundary condition with a finite element method (FEM) at the terahertz (THz) wave propagation. After the simulation process, the designed O-PCF sensor performs the extreme relative sensitivity at 77.14%, 78.06% and 76.11% at 1 THz for three chemicals such as Ethanol (n = 1.354), Benzene (n = 1.366) and Water (n = 1.330). Alternatively, the low confinement losses are 2.26 × 10−03 dB/m, 3.02 × 10−06 dB/m and 2.72 × 10−02 dB/m for similar three chemicals at 1 THz. The effective area, effective mode index and total power fraction are also concisely explained here. Furthermore, we hope that the suggested excellent designed of octagonal photonic crystal fiber (O-PCF) can be utilized particularly for chemical sensing in material study, industrial areas, nano-optics, biomedical and others communication areas in THz technology.http://www.sciencedirect.com/science/article/pii/S2214180420301057Photonic crystal fiberOptical sensorTHz sensorOptical loss profileConfinement lossEffective area
collection DOAJ
language English
format Article
sources DOAJ
author Md. Abdullah-Al-Shafi
Shuvo Sen
spellingShingle Md. Abdullah-Al-Shafi
Shuvo Sen
Design and analysis of a chemical sensing octagonal photonic crystal fiber (O-PCF) based optical sensor with high relative sensitivity for terahertz (THz) regime
Sensing and Bio-Sensing Research
Photonic crystal fiber
Optical sensor
THz sensor
Optical loss profile
Confinement loss
Effective area
author_facet Md. Abdullah-Al-Shafi
Shuvo Sen
author_sort Md. Abdullah-Al-Shafi
title Design and analysis of a chemical sensing octagonal photonic crystal fiber (O-PCF) based optical sensor with high relative sensitivity for terahertz (THz) regime
title_short Design and analysis of a chemical sensing octagonal photonic crystal fiber (O-PCF) based optical sensor with high relative sensitivity for terahertz (THz) regime
title_full Design and analysis of a chemical sensing octagonal photonic crystal fiber (O-PCF) based optical sensor with high relative sensitivity for terahertz (THz) regime
title_fullStr Design and analysis of a chemical sensing octagonal photonic crystal fiber (O-PCF) based optical sensor with high relative sensitivity for terahertz (THz) regime
title_full_unstemmed Design and analysis of a chemical sensing octagonal photonic crystal fiber (O-PCF) based optical sensor with high relative sensitivity for terahertz (THz) regime
title_sort design and analysis of a chemical sensing octagonal photonic crystal fiber (o-pcf) based optical sensor with high relative sensitivity for terahertz (thz) regime
publisher Elsevier
series Sensing and Bio-Sensing Research
issn 2214-1804
publishDate 2020-08-01
description This article represents a new structure of octagonal cladding with a rotated-hexa core in photonic crystal fiber (O-PCF) for chemical sensing application in the terahertz (THz) waveguide. The five layers octagonal shape in circular air holes of cladding region with two layers rotated-hexa shape in circular air holes of core area are proposed in this study. The mathematical analysis is achieved from the technique of perfectly matched layers (PML) boundary condition with a finite element method (FEM) at the terahertz (THz) wave propagation. After the simulation process, the designed O-PCF sensor performs the extreme relative sensitivity at 77.14%, 78.06% and 76.11% at 1 THz for three chemicals such as Ethanol (n = 1.354), Benzene (n = 1.366) and Water (n = 1.330). Alternatively, the low confinement losses are 2.26 × 10−03 dB/m, 3.02 × 10−06 dB/m and 2.72 × 10−02 dB/m for similar three chemicals at 1 THz. The effective area, effective mode index and total power fraction are also concisely explained here. Furthermore, we hope that the suggested excellent designed of octagonal photonic crystal fiber (O-PCF) can be utilized particularly for chemical sensing in material study, industrial areas, nano-optics, biomedical and others communication areas in THz technology.
topic Photonic crystal fiber
Optical sensor
THz sensor
Optical loss profile
Confinement loss
Effective area
url http://www.sciencedirect.com/science/article/pii/S2214180420301057
work_keys_str_mv AT mdabdullahalshafi designandanalysisofachemicalsensingoctagonalphotoniccrystalfiberopcfbasedopticalsensorwithhighrelativesensitivityforterahertzthzregime
AT shuvosen designandanalysisofachemicalsensingoctagonalphotoniccrystalfiberopcfbasedopticalsensorwithhighrelativesensitivityforterahertzthzregime
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