Irregular hexagonal core based surface plasmon resonance sensor in near-infrared region

In this work, a highly sensitive yet simple hexagonal photonic crystal fiber (PCF) based surface plasmon resonance (SPR) refractive index (RI) sensor is proposed. The proposed structure consists of twelve purely circular air-holes to render the fabrication process easily realizable. For the feasibil...

Full description

Bibliographic Details
Main Authors: K.M. Mustafizur Rahman, M. Shah Alam, Rajib Ahmed, M. Asiful Islam
Format: Article
Language:English
Published: Elsevier 2021-04-01
Series:Results in Physics
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2211379721001546
id doaj-af5f90b179794bc58ea53371109d9fc7
record_format Article
spelling doaj-af5f90b179794bc58ea53371109d9fc72021-04-12T04:23:01ZengElsevierResults in Physics2211-37972021-04-0123103983Irregular hexagonal core based surface plasmon resonance sensor in near-infrared regionK.M. Mustafizur Rahman0M. Shah Alam1Rajib Ahmed2M. Asiful Islam3Department of Electrical, Electronic and Communication Engineering, Military Institute of Science and Technology(MIST), Mirpur-12, Dhaka 1206, BangladeshDepartment of Electrical and Electronic Engineering, Bangladesh University of Engineering and Technology, Dhaka 1205, BangladeshDepartment of Electrical and Electronic Engineering, University of Dhaka, Dhaka 1000, BangladeshDepartment of Electrical and Electronic Engineering, Bangladesh University of Engineering and Technology, Dhaka 1205, Bangladesh; Corresponding author.In this work, a highly sensitive yet simple hexagonal photonic crystal fiber (PCF) based surface plasmon resonance (SPR) refractive index (RI) sensor is proposed. The proposed structure consists of twelve purely circular air-holes to render the fabrication process easily realizable. For the feasibility of operation, the target analyte, and the plasmonic material, Indium Tin Oxide (ITO) are employed around the outer surface of the sensor. The performance of the sensor is numerically analyzed using the full-vectorial finite element method (FEM) for different fiber geometric parameters and RI variations. A step-by-step design procedure has been followed starting from the regular hexagonal lattice PCF structure. The optimal sensor performance is obtained by tuning the geometric parameters over the relevant numeric range. It is shown that the proposed sensor achieves a maximum wavelength sensitivity of 37000 nm/RIU and a maximum amplitude sensitivity of 407.285 RIU-1for a dielectric RI range from 1.33 to 1.40 in the near-infrared wavelength regime (1470 nm − 2220 nm). Apart from this, to ensure high detection accuracy of small refractive index (RI) changes, the sensor achieves the highest wavelength resolution and amplitude resolution of 2.70×10-6 RIU and 2.46×10-5RIU-1, respectively, along with the highest Figure of Merit of 217.65 RIU-1. Hence, the proposed PCF-SPR sensor can potentially be used to detect unknown refractive indices for various applications including biosensing.http://www.sciencedirect.com/science/article/pii/S2211379721001546Optical sensorsPhotonic crystal fibersRefractive index sensorsSurface plasmon resonance
collection DOAJ
language English
format Article
sources DOAJ
author K.M. Mustafizur Rahman
M. Shah Alam
Rajib Ahmed
M. Asiful Islam
spellingShingle K.M. Mustafizur Rahman
M. Shah Alam
Rajib Ahmed
M. Asiful Islam
Irregular hexagonal core based surface plasmon resonance sensor in near-infrared region
Results in Physics
Optical sensors
Photonic crystal fibers
Refractive index sensors
Surface plasmon resonance
author_facet K.M. Mustafizur Rahman
M. Shah Alam
Rajib Ahmed
M. Asiful Islam
author_sort K.M. Mustafizur Rahman
title Irregular hexagonal core based surface plasmon resonance sensor in near-infrared region
title_short Irregular hexagonal core based surface plasmon resonance sensor in near-infrared region
title_full Irregular hexagonal core based surface plasmon resonance sensor in near-infrared region
title_fullStr Irregular hexagonal core based surface plasmon resonance sensor in near-infrared region
title_full_unstemmed Irregular hexagonal core based surface plasmon resonance sensor in near-infrared region
title_sort irregular hexagonal core based surface plasmon resonance sensor in near-infrared region
publisher Elsevier
series Results in Physics
issn 2211-3797
publishDate 2021-04-01
description In this work, a highly sensitive yet simple hexagonal photonic crystal fiber (PCF) based surface plasmon resonance (SPR) refractive index (RI) sensor is proposed. The proposed structure consists of twelve purely circular air-holes to render the fabrication process easily realizable. For the feasibility of operation, the target analyte, and the plasmonic material, Indium Tin Oxide (ITO) are employed around the outer surface of the sensor. The performance of the sensor is numerically analyzed using the full-vectorial finite element method (FEM) for different fiber geometric parameters and RI variations. A step-by-step design procedure has been followed starting from the regular hexagonal lattice PCF structure. The optimal sensor performance is obtained by tuning the geometric parameters over the relevant numeric range. It is shown that the proposed sensor achieves a maximum wavelength sensitivity of 37000 nm/RIU and a maximum amplitude sensitivity of 407.285 RIU-1for a dielectric RI range from 1.33 to 1.40 in the near-infrared wavelength regime (1470 nm − 2220 nm). Apart from this, to ensure high detection accuracy of small refractive index (RI) changes, the sensor achieves the highest wavelength resolution and amplitude resolution of 2.70×10-6 RIU and 2.46×10-5RIU-1, respectively, along with the highest Figure of Merit of 217.65 RIU-1. Hence, the proposed PCF-SPR sensor can potentially be used to detect unknown refractive indices for various applications including biosensing.
topic Optical sensors
Photonic crystal fibers
Refractive index sensors
Surface plasmon resonance
url http://www.sciencedirect.com/science/article/pii/S2211379721001546
work_keys_str_mv AT kmmustafizurrahman irregularhexagonalcorebasedsurfaceplasmonresonancesensorinnearinfraredregion
AT mshahalam irregularhexagonalcorebasedsurfaceplasmonresonancesensorinnearinfraredregion
AT rajibahmed irregularhexagonalcorebasedsurfaceplasmonresonancesensorinnearinfraredregion
AT masifulislam irregularhexagonalcorebasedsurfaceplasmonresonancesensorinnearinfraredregion
_version_ 1721530394724007936