Thermoluminescence response of Ge-, Al- and Nd- doped optical fibers by 6MeV - Electron and 6MV - Photon irradiations

In this paper, we report the prediction of thermoluminescence responses of Neodymium-doped SiO2 optical fibre with various dose ranges from 0.5 Gy to 4.0 Gy by 6MeV - electron irradiations without requirement for experimental measurements. A technique has been developed to calculate prediction of 6M...

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Main Authors: Hossain, Imam, Saeed, Mohammad Alam, Wagiran, Husin, Hida, N., Yaakob, Nor Haliza, Moburak, A. A.
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Published: National Science Center, Kharkov Institute of Physics and Technology 2015
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Online Access:http://eprints.utm.my/id/eprint/59018/
http://dx.doi.org/10.12785/amis/090211
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.590182017-04-12T01:15:32Z http://eprints.utm.my/id/eprint/59018/ Thermoluminescence response of Ge-, Al- and Nd- doped optical fibers by 6MeV - Electron and 6MV - Photon irradiations Hossain, Imam Saeed, Mohammad Alam Wagiran, Husin Hida, N. Yaakob, Nor Haliza Moburak, A. A. QC Physics In this paper, we report the prediction of thermoluminescence responses of Neodymium-doped SiO2 optical fibre with various dose ranges from 0.5 Gy to 4.0 Gy by 6MeV - electron irradiations without requirement for experimental measurements. A technique has been developed to calculate prediction of 6MeV - electron response of Neodymium-doped SiO2 optical fibre by observing the measured TL response of 6MV - photon and the ratio of known measured photon/electron yield ratio distribution for Ge-doped, Al-doped optical fibre and standard TLD 100 dosimeter. The samples were kept in gelatin capsule an irradiated with 6MV - photon at the dose range from 0.5 Gy to 4.0 Gy. Siemens model Primus 3368 linear accelerator located at Hospital Sultan Ismail, Johor Bahru has been used to deliver the photon beam to the samples. We found the average response ratio of 6MV - photon and 6MeV - electron in Ge-doped, Al-doped optical fibre and standard TLD-100 dosimeter are 0.83(3). Observing the measured value of 6MV - photon irradiation this average ratio is useful to find the prediction of thermoluminescence responses by 6MeV - electron irradiation of Neodymium-doped SiO2 optical fibre by the requirement for experimental measurements with various dose ranges from 0.5 Gy to 4.0 Gy by 6MV - photon irradiations. National Science Center, Kharkov Institute of Physics and Technology 2015 Article PeerReviewed Hossain, Imam and Saeed, Mohammad Alam and Wagiran, Husin and Hida, N. and Yaakob, Nor Haliza and Moburak, A. A. (2015) Thermoluminescence response of Ge-, Al- and Nd- doped optical fibers by 6MeV - Electron and 6MV - Photon irradiations. Problems Of Atomic Science And Technology, 97 (3). pp. 65-68. ISSN 1682-9344 http://dx.doi.org/10.12785/amis/090211 DOI:10.12785/amis/090211
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic QC Physics
spellingShingle QC Physics
Hossain, Imam
Saeed, Mohammad Alam
Wagiran, Husin
Hida, N.
Yaakob, Nor Haliza
Moburak, A. A.
Thermoluminescence response of Ge-, Al- and Nd- doped optical fibers by 6MeV - Electron and 6MV - Photon irradiations
description In this paper, we report the prediction of thermoluminescence responses of Neodymium-doped SiO2 optical fibre with various dose ranges from 0.5 Gy to 4.0 Gy by 6MeV - electron irradiations without requirement for experimental measurements. A technique has been developed to calculate prediction of 6MeV - electron response of Neodymium-doped SiO2 optical fibre by observing the measured TL response of 6MV - photon and the ratio of known measured photon/electron yield ratio distribution for Ge-doped, Al-doped optical fibre and standard TLD 100 dosimeter. The samples were kept in gelatin capsule an irradiated with 6MV - photon at the dose range from 0.5 Gy to 4.0 Gy. Siemens model Primus 3368 linear accelerator located at Hospital Sultan Ismail, Johor Bahru has been used to deliver the photon beam to the samples. We found the average response ratio of 6MV - photon and 6MeV - electron in Ge-doped, Al-doped optical fibre and standard TLD-100 dosimeter are 0.83(3). Observing the measured value of 6MV - photon irradiation this average ratio is useful to find the prediction of thermoluminescence responses by 6MeV - electron irradiation of Neodymium-doped SiO2 optical fibre by the requirement for experimental measurements with various dose ranges from 0.5 Gy to 4.0 Gy by 6MV - photon irradiations.
format Article
author Hossain, Imam
Saeed, Mohammad Alam
Wagiran, Husin
Hida, N.
Yaakob, Nor Haliza
Moburak, A. A.
author_facet Hossain, Imam
Saeed, Mohammad Alam
Wagiran, Husin
Hida, N.
Yaakob, Nor Haliza
Moburak, A. A.
author_sort Hossain, Imam
title Thermoluminescence response of Ge-, Al- and Nd- doped optical fibers by 6MeV - Electron and 6MV - Photon irradiations
title_short Thermoluminescence response of Ge-, Al- and Nd- doped optical fibers by 6MeV - Electron and 6MV - Photon irradiations
title_full Thermoluminescence response of Ge-, Al- and Nd- doped optical fibers by 6MeV - Electron and 6MV - Photon irradiations
title_fullStr Thermoluminescence response of Ge-, Al- and Nd- doped optical fibers by 6MeV - Electron and 6MV - Photon irradiations
title_full_unstemmed Thermoluminescence response of Ge-, Al- and Nd- doped optical fibers by 6MeV - Electron and 6MV - Photon irradiations
title_sort thermoluminescence response of ge-, al- and nd- doped optical fibers by 6mev - electron and 6mv - photon irradiations
publisher National Science Center, Kharkov Institute of Physics and Technology
publishDate 2015
url http://eprints.utm.my/id/eprint/59018/
http://dx.doi.org/10.12785/amis/090211
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