Numerical demonstration of triangular shaped photonic crystal fibre‐based biosensor in the Terahertz range

Abstract In this study, a novel design of microstructure ring‐based triangular mold photonic crystal fibre has been numerically investigated and introduced as an alcohol sensor in Terahertz (THz) band region to get a very high relative‐sensitivity and negligible confinement‐loss profile. Perfectly M...

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Main Authors: Kawsar Ahmed, Bikash Kumar Paul, Fahad Ahmed, Md. Asaduzzaman Jabin, Muhammad Shahin Uddin
Format: Article
Language:English
Published: Wiley 2021-02-01
Series:IET Optoelectronics
Online Access:https://doi.org/10.1049/ote2.12006
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spelling doaj-94c85d7d6eef46e798a68a8cea88e7de2021-08-02T08:30:25ZengWileyIET Optoelectronics1751-87681751-87762021-02-011511710.1049/ote2.12006Numerical demonstration of triangular shaped photonic crystal fibre‐based biosensor in the Terahertz rangeKawsar Ahmed0Bikash Kumar Paul1Fahad Ahmed2Md. Asaduzzaman Jabin3Muhammad Shahin Uddin4Department of Information and Communication Technology (ICT) Mawlana Bhashani Science and Technology University (MBSTU) Tangail BangladeshDepartment of Information and Communication Technology (ICT) Mawlana Bhashani Science and Technology University (MBSTU) Tangail BangladeshDepartment of Computer Science and Engineering University of Asia Pacific Dhaka BangladeshDepartment of Information and Communication Technology (ICT) Mawlana Bhashani Science and Technology University (MBSTU) Tangail BangladeshDepartment of Information and Communication Technology (ICT) Mawlana Bhashani Science and Technology University (MBSTU) Tangail BangladeshAbstract In this study, a novel design of microstructure ring‐based triangular mold photonic crystal fibre has been numerically investigated and introduced as an alcohol sensor in Terahertz (THz) band region to get a very high relative‐sensitivity and negligible confinement‐loss profile. Perfectly Matched Layer contains circular air holes with a semi‐poly crystalline symmetric core structure in the triangular cladding region. The entire evaluation process is done by analyzing 2,888,310 mesh elements with the finite element method. Also, the proposed model is justified for an operating frequency of the THz band gap between 1.4 THz and 3.5 THz along with a base material of TOPAS. Last of all, the relative sensitivity profiles of the proposed model are 79.39%, 79.99%, and 80.27% respectively to the water, ethanol, benzene at an optimum frequency of 1.5 THz. In fact, the most optimum performance indicators are 1.18 × 10−12 dB/m, 1.8 × 10−5 µm2, 80%, 0.1 ps/THz/cm and 0.1‐1.5 respectively to the confinement‐loss (Lc), effective area (Aeff), power fraction (η′), dispersion (β2) and V‐Parameter (Veff) at the following optimum frequency for the proposed structure. By evaluating these performance profiles, the proposed model can prove itself a better choice than any other prior model in the field of sensing.https://doi.org/10.1049/ote2.12006
collection DOAJ
language English
format Article
sources DOAJ
author Kawsar Ahmed
Bikash Kumar Paul
Fahad Ahmed
Md. Asaduzzaman Jabin
Muhammad Shahin Uddin
spellingShingle Kawsar Ahmed
Bikash Kumar Paul
Fahad Ahmed
Md. Asaduzzaman Jabin
Muhammad Shahin Uddin
Numerical demonstration of triangular shaped photonic crystal fibre‐based biosensor in the Terahertz range
IET Optoelectronics
author_facet Kawsar Ahmed
Bikash Kumar Paul
Fahad Ahmed
Md. Asaduzzaman Jabin
Muhammad Shahin Uddin
author_sort Kawsar Ahmed
title Numerical demonstration of triangular shaped photonic crystal fibre‐based biosensor in the Terahertz range
title_short Numerical demonstration of triangular shaped photonic crystal fibre‐based biosensor in the Terahertz range
title_full Numerical demonstration of triangular shaped photonic crystal fibre‐based biosensor in the Terahertz range
title_fullStr Numerical demonstration of triangular shaped photonic crystal fibre‐based biosensor in the Terahertz range
title_full_unstemmed Numerical demonstration of triangular shaped photonic crystal fibre‐based biosensor in the Terahertz range
title_sort numerical demonstration of triangular shaped photonic crystal fibre‐based biosensor in the terahertz range
publisher Wiley
series IET Optoelectronics
issn 1751-8768
1751-8776
publishDate 2021-02-01
description Abstract In this study, a novel design of microstructure ring‐based triangular mold photonic crystal fibre has been numerically investigated and introduced as an alcohol sensor in Terahertz (THz) band region to get a very high relative‐sensitivity and negligible confinement‐loss profile. Perfectly Matched Layer contains circular air holes with a semi‐poly crystalline symmetric core structure in the triangular cladding region. The entire evaluation process is done by analyzing 2,888,310 mesh elements with the finite element method. Also, the proposed model is justified for an operating frequency of the THz band gap between 1.4 THz and 3.5 THz along with a base material of TOPAS. Last of all, the relative sensitivity profiles of the proposed model are 79.39%, 79.99%, and 80.27% respectively to the water, ethanol, benzene at an optimum frequency of 1.5 THz. In fact, the most optimum performance indicators are 1.18 × 10−12 dB/m, 1.8 × 10−5 µm2, 80%, 0.1 ps/THz/cm and 0.1‐1.5 respectively to the confinement‐loss (Lc), effective area (Aeff), power fraction (η′), dispersion (β2) and V‐Parameter (Veff) at the following optimum frequency for the proposed structure. By evaluating these performance profiles, the proposed model can prove itself a better choice than any other prior model in the field of sensing.
url https://doi.org/10.1049/ote2.12006
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