| Literature DB >> 29892619 |
Md Abdul Khalek1, Sujan Chakma1, Bikash Kumar Paul1,2,3, Kawsar Ahmed1,2.
Abstract
In this research work a perfectly circular lattice Photonic Crystal Fiber (PCF) based surface Plasmon resonance (SPR) based sensor has been proposed. The investigation process has been successfully carried out using finite element method (FEM) based commercial available software package COMSOL Multiphysics version 4.2. The whole investigation module covers the wider optical spectrum ranging from 0.48 µm to 1.10 µm. Using the wavelength interrogation method the proposed model exposed maximum sensitivity of 9000 nm/RIU(Refractive Index Unit) and using the amplitude interrogation method it obtained maximum sensitivity of 318 RIU-1. Moreover the maximum sensor resolution of 1.11×10-5 in the sensing ranges between 1.34 and 1.37. Based on the suggested sensor model may provide great impact in biological area such as bio-imaging.Entities:
Year: 2018 PMID: 29892619 PMCID: PMC5993009 DOI: 10.1016/j.dib.2018.05.026
Source DB: PubMed Journal: Data Brief ISSN: 2352-3409
Variations on several Gold thicknesses to observe the modal properties of the proposed PCF the operating wavelength lambda (λ)=0.48 µm to 1.10 µm. The diameter of center air hole at the first layer and other two air hole at the second layer are rc=r2=0.2 µm. The rest air holes are denoted by r1 where, r1=0.4 µm. The air holes inside the ring are organized by maintaining a fixed distance (p) where, p=1.8 µm. The thickness dg of the gold layer, analyte layer and PML layer is 30–40 nm, 0.965 µm and 7.2 µm respectively.
| Gold thickness (nm) | Analyte ( | Peak Loss (dB/cm) | Amplitude sensitivity (RIU−1) |
|---|---|---|---|
| 30 | 1.36 | 172.32 (at | 240.0451 |
| 1.37 | 397.06 (at | ||
| 35 | 1.36 | 375.49 (at | 318.1160 |
| 1.37 | 700.04 (at | ||
| 40 | 1.36 | 424.01 (at | 288.9673 |
| 1.37 | 537.49 (at |
Variations of several PML depth to observe the modal properties of the proposed PCF; the operating wavelength lambda (λ)=0.48 µm to 1.10 µm and gold thickness 35 nm. The diameter of center air hole at the first layer and other two air hole at the second layer are rc=r2=0.2 µm. The rest air holes are denoted by r1 where, r1=0.4 µm. The air holes inside the ring are organized by maintaining a fixed distance (p) where, p=1.8 µm. The thickness dg of the gold layer, analyte layer and PML layer is 35 nm, 0.965 µm and 7.0–7.4 µm respectively.
| PML depth (µm) | Wavelength (µm) | Analyte ( | Peak Loss (dB/cm) |
|---|---|---|---|
| 7.0 | 0.56 | 1.35 | 106.17 |
| 0.62 | 1.36 | 374.76 | |
| 7.2 | 0.56 | 1.35 | 106.34 |
| 0.62 | 1.36 | 375.49 | |
| 7.4 | 0.72 | 1.35 | 374.81 |
| 0.84 | 1.36 | 106.17 |
Variations of several chemical area to observe the modal properties of the proposed PCF; the operating wavelength lambda (λ)=0.48 µm to 1.10 µm, gold thickness 35 nm and PML 7.2 µm.
| Chemical area (µm) | Analyte | Peak Loss (dB/cm) | Amplitude sensitivity (RIU−1) |
|---|---|---|---|
| 0.565 | 1.35 | 106.17 (at | 269.8864 |
| 1.36 | 374.76(at | ||
| 0.965 | 1.35 | 106.34(at | 318.1160 |
| 1.36 | 375.49(at | ||
| 1.365 | 1.35 | 106.17(at | 291.3925 |
| 1.36 | 374.81(at |
Variations of several radius of center air hole to observe the modal properties of the proposed PCF; the operating wavelength lambda (λ)=0.48 µm to 1.10 µm, gold thickness 35 nm, PML 7.2 µm and chemical area 0.965 µm.
| Center air hole radius (µm) | Analyte ( | Peak Loss(dB/cm) | Amplitude sensitivity (RIU−1) |
|---|---|---|---|
| 0.1 | 1.35 | 104.39 (at | 290.1938 |
| 1.36 | 367.89(at | ||
| 0.2 | 1.35 | 106.34 (at | 318.1160 |
| 1.36 | 375.49(at | ||
| Without center | 1.35 | 103.99 (at | 289.9285 |
| 1.36 | 366.34 (at |
Variations of several pitch value to observe the modal properties of the proposed PCF; the operating wavelength lambda (λ)=0.48 µm to 1.10 µm, gold thickness 35 nm, PML 7.2 µm, chemical area 0.965 µm and radius of center air hole 0.2 µm.
| Pitch (µm) | Analyte ( | Peak Loss (dB/cm) | Amplitude sensitivity (RIU−1) |
|---|---|---|---|
| 1.50 | 1.35 | 276.85 (at | 231.6415 |
| 1.36 | 807.90 (at | ||
| 2.00 | 1.35 | 106.34 (at | 318.1160 |
| 1.36 | 375.49 (at | ||
| 2.50 | 1.35 | 52.61 (at | 261.3937 |
| 1.36 | 175.49 (at |
Fig. 1The cross sectional end faced view of the proposed PCF based SPR sensor.
Fig. 3(a) Confinement loss variation for different thickness of gold layer and (b) amplitude sensitivity for different thickness of gold layer with p=2 µm, rc=r2=0.2 µm, r1=0.4 µm for analyte RI of 1.36.
Fig. 2(a) Surface mode and (b) SPP mode of proposed structure for λ=0.70 µm and na=1.37 nm.
| Subject area | Sensor |
|---|---|
| More Specific Subject area | Surface Plasmon Resonance based biosensor. |
| Types of data | Numerical analysis |
| How data was acquired | Full vectorial finite element method (FV-FEM) based tool COMSOL Multiphysics version 4.2 with circular PML. |
| Data format | Raw data, tables, figures. |
| Data accessibility | Data within the article and GitHub. Link: |