Advanced glow curve analysis of fabricated fibres for various sources of ionizing radiation

Determination is made of glow curves attributes of Ge-doped silica fibres fabricated from Ge-doped preforms. In particular interest is in Ge-doped cylindrical (Ge-CF) and Ge-doped flat (Ge-FF). The fabrications are irradiated using various ionizing radiation sources types, protons (150 MeV, 210 MeV)...

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Main Authors: Kandan, V., M. F., Hassan, N., Omar, H. K., Shahar, F., Mohamad, M. K., Abdul Karim, S. F., Abdul Sani, Bradley, D.A., Mohd Noor, N.
Format: Article
Published: Elsevier 2021
Online Access:http://psasir.upm.edu.my/id/eprint/95723/
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author Kandan, V.
M. F., Hassan
N., Omar
H. K., Shahar
F., Mohamad
M. K., Abdul Karim
S. F., Abdul Sani
Bradley, D.A.
Mohd Noor, N.
author_facet Kandan, V.
M. F., Hassan
N., Omar
H. K., Shahar
F., Mohamad
M. K., Abdul Karim
S. F., Abdul Sani
Bradley, D.A.
Mohd Noor, N.
author_sort Kandan, V.
building UPM Institutional Repository
collection Online Access
description Determination is made of glow curves attributes of Ge-doped silica fibres fabricated from Ge-doped preforms. In particular interest is in Ge-doped cylindrical (Ge-CF) and Ge-doped flat (Ge-FF). The fabrications are irradiated using various ionizing radiation sources types, protons (150 MeV, 210 MeV), 6 and 10 MV photons, 6 MeV electrons, and 60Co gammas (mean energy 1.25 MeV), all at a constant dose of 5 Gy. The fibres have been fabricated using the MCVD technique, notably with a Ge-CF having a larger core compared to the commercial cylindrical fibres (CF). Using WinGCF software the glow curves have been deconvolved, revealing five contributory glow peaks, evaluation being made of three kinetic parameters: maximum temperature (Tmax), activation energy (Ea) and peak integral (PI). Ge-CF Ea and PI values are found to be greater than those for Ge-FF. Moreover, for Ge-CF, the activation energy for electromagnetic irradiation (gamma photons) achieves a maximum reading at peak number 3 while its PI is found to be the least. The PI for photon irradiation is shown to be greater than that for electron and proton irradiation. For Ge-FF, Ea again achieves its greatest value at peak 3, the PI being maximum at peak 2 and least at peak 3. Particle irradiations are more greatly associated with deeper trapping levels. Additionally, the overall conclusion is that Ge-CF offers superior TL yield to that of Ge-FF. One-way analysis of variance (ANOVA) for the individual peaks shows there to be significant differences in terms of PI and Ea, p < 0.05 for all types of radiation, but weakly significant in terms of Tmax for both types of fibres (p < 0.05), mostly for proton and photon irradiation.
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institution Universiti Putra Malaysia
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spelling upm-957232023-04-05T04:30:32Z http://psasir.upm.edu.my/id/eprint/95723/ Advanced glow curve analysis of fabricated fibres for various sources of ionizing radiation Kandan, V. M. F., Hassan N., Omar H. K., Shahar F., Mohamad M. K., Abdul Karim S. F., Abdul Sani Bradley, D.A. Mohd Noor, N. Determination is made of glow curves attributes of Ge-doped silica fibres fabricated from Ge-doped preforms. In particular interest is in Ge-doped cylindrical (Ge-CF) and Ge-doped flat (Ge-FF). The fabrications are irradiated using various ionizing radiation sources types, protons (150 MeV, 210 MeV), 6 and 10 MV photons, 6 MeV electrons, and 60Co gammas (mean energy 1.25 MeV), all at a constant dose of 5 Gy. The fibres have been fabricated using the MCVD technique, notably with a Ge-CF having a larger core compared to the commercial cylindrical fibres (CF). Using WinGCF software the glow curves have been deconvolved, revealing five contributory glow peaks, evaluation being made of three kinetic parameters: maximum temperature (Tmax), activation energy (Ea) and peak integral (PI). Ge-CF Ea and PI values are found to be greater than those for Ge-FF. Moreover, for Ge-CF, the activation energy for electromagnetic irradiation (gamma photons) achieves a maximum reading at peak number 3 while its PI is found to be the least. The PI for photon irradiation is shown to be greater than that for electron and proton irradiation. For Ge-FF, Ea again achieves its greatest value at peak 3, the PI being maximum at peak 2 and least at peak 3. Particle irradiations are more greatly associated with deeper trapping levels. Additionally, the overall conclusion is that Ge-CF offers superior TL yield to that of Ge-FF. One-way analysis of variance (ANOVA) for the individual peaks shows there to be significant differences in terms of PI and Ea, p < 0.05 for all types of radiation, but weakly significant in terms of Tmax for both types of fibres (p < 0.05), mostly for proton and photon irradiation. Elsevier 2021 Article PeerReviewed Kandan, V. and M. F., Hassan and N., Omar and H. K., Shahar and F., Mohamad and M. K., Abdul Karim and S. F., Abdul Sani and Bradley, D.A. and Mohd Noor, N. (2021) Advanced glow curve analysis of fabricated fibres for various sources of ionizing radiation. Radiation Physics and Chemistry, 178. art. no. 108981. pp. 1-8. ISSN 0969-806X https://www.sciencedirect.com/science/article/pii/S0969806X20304473 10.1016/j.radphyschem.2020.108981
spellingShingle Kandan, V.
M. F., Hassan
N., Omar
H. K., Shahar
F., Mohamad
M. K., Abdul Karim
S. F., Abdul Sani
Bradley, D.A.
Mohd Noor, N.
Advanced glow curve analysis of fabricated fibres for various sources of ionizing radiation
title Advanced glow curve analysis of fabricated fibres for various sources of ionizing radiation
title_full Advanced glow curve analysis of fabricated fibres for various sources of ionizing radiation
title_fullStr Advanced glow curve analysis of fabricated fibres for various sources of ionizing radiation
title_full_unstemmed Advanced glow curve analysis of fabricated fibres for various sources of ionizing radiation
title_short Advanced glow curve analysis of fabricated fibres for various sources of ionizing radiation
title_sort advanced glow curve analysis of fabricated fibres for various sources of ionizing radiation
url http://psasir.upm.edu.my/id/eprint/95723/
http://psasir.upm.edu.my/id/eprint/95723/
http://psasir.upm.edu.my/id/eprint/95723/