Thermoluminescence energy response of a germanium-doped optical fiber obtained using a Monte Carlo N-particle code simulation

This paper reports on the energy response of a Ge-doped optical fiber subjected to photon irradiation. The thermoluminescence (TL) responses of the Ge-doped optical fiber for various photon energies ranging from 20 keV to 6 MeV were investigated as energy absorbed in the TL material by using the Mon...

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Main Authors: Wagiran, Husin, Hossain, Md. Imam, Asni, Hazila, Ramli, Ahmad Termizi, Saripan, M. Iqbal
Format: Article
Language:English
Published: The Korean Physical Society 2011
Online Access:http://psasir.upm.edu.my/id/eprint/22775/1/Thermoluminescence%20energy%20response%20of%20a%20germanium-doped%20optical%20fiber%20obtained%20using%20a%20Monte%20Carlo%20N-particle%20code%20simulation.pdf
http://psasir.upm.edu.my/id/eprint/22775/
https://www.jkps.or.kr/journal/view.html?volume=59&number=2&spage=337&year=2011
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spelling my.upm.eprints.227752020-04-15T16:24:24Z http://psasir.upm.edu.my/id/eprint/22775/ Thermoluminescence energy response of a germanium-doped optical fiber obtained using a Monte Carlo N-particle code simulation Wagiran, Husin Hossain, Md. Imam Asni, Hazila Ramli, Ahmad Termizi Saripan, M. Iqbal This paper reports on the energy response of a Ge-doped optical fiber subjected to photon irradiation. The thermoluminescence (TL) responses of the Ge-doped optical fiber for various photon energies ranging from 20 keV to 6 MeV were investigated as energy absorbed in the TL material by using the Monte Carlo N Particle transport code version 5 (MCNP5). The results obtained are compared against results for the thermoluminescence dosimeter 100 (TLD-100). The input parameters included in this study were the geometry specification, the source information, the material information and tallies. Tally F6 is an important parameter in data card which was used in this simulation as a energy-dependant heating function instead of flux. Similar patterns of response were found for each dosimeter. The simulation shows that the optical fiber has a greater response than TLD 100 in the lower energy range, but the responses overlap in the higher energy ranges. The Korean Physical Society 2011 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/22775/1/Thermoluminescence%20energy%20response%20of%20a%20germanium-doped%20optical%20fiber%20obtained%20using%20a%20Monte%20Carlo%20N-particle%20code%20simulation.pdf Wagiran, Husin and Hossain, Md. Imam and Asni, Hazila and Ramli, Ahmad Termizi and Saripan, M. Iqbal (2011) Thermoluminescence energy response of a germanium-doped optical fiber obtained using a Monte Carlo N-particle code simulation. Journal of the Korean Physical Society, 59 (2). pp. 337-340. ISSN 0374-4884; ESSN: 1976-8524 https://www.jkps.or.kr/journal/view.html?volume=59&number=2&spage=337&year=2011 10.3938/jkps.59.337
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description This paper reports on the energy response of a Ge-doped optical fiber subjected to photon irradiation. The thermoluminescence (TL) responses of the Ge-doped optical fiber for various photon energies ranging from 20 keV to 6 MeV were investigated as energy absorbed in the TL material by using the Monte Carlo N Particle transport code version 5 (MCNP5). The results obtained are compared against results for the thermoluminescence dosimeter 100 (TLD-100). The input parameters included in this study were the geometry specification, the source information, the material information and tallies. Tally F6 is an important parameter in data card which was used in this simulation as a energy-dependant heating function instead of flux. Similar patterns of response were found for each dosimeter. The simulation shows that the optical fiber has a greater response than TLD 100 in the lower energy range, but the responses overlap in the higher energy ranges.
format Article
author Wagiran, Husin
Hossain, Md. Imam
Asni, Hazila
Ramli, Ahmad Termizi
Saripan, M. Iqbal
spellingShingle Wagiran, Husin
Hossain, Md. Imam
Asni, Hazila
Ramli, Ahmad Termizi
Saripan, M. Iqbal
Thermoluminescence energy response of a germanium-doped optical fiber obtained using a Monte Carlo N-particle code simulation
author_facet Wagiran, Husin
Hossain, Md. Imam
Asni, Hazila
Ramli, Ahmad Termizi
Saripan, M. Iqbal
author_sort Wagiran, Husin
title Thermoluminescence energy response of a germanium-doped optical fiber obtained using a Monte Carlo N-particle code simulation
title_short Thermoluminescence energy response of a germanium-doped optical fiber obtained using a Monte Carlo N-particle code simulation
title_full Thermoluminescence energy response of a germanium-doped optical fiber obtained using a Monte Carlo N-particle code simulation
title_fullStr Thermoluminescence energy response of a germanium-doped optical fiber obtained using a Monte Carlo N-particle code simulation
title_full_unstemmed Thermoluminescence energy response of a germanium-doped optical fiber obtained using a Monte Carlo N-particle code simulation
title_sort thermoluminescence energy response of a germanium-doped optical fiber obtained using a monte carlo n-particle code simulation
publisher The Korean Physical Society
publishDate 2011
url http://psasir.upm.edu.my/id/eprint/22775/1/Thermoluminescence%20energy%20response%20of%20a%20germanium-doped%20optical%20fiber%20obtained%20using%20a%20Monte%20Carlo%20N-particle%20code%20simulation.pdf
http://psasir.upm.edu.my/id/eprint/22775/
https://www.jkps.or.kr/journal/view.html?volume=59&number=2&spage=337&year=2011
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score 13.244413