Thermoluminescence energy response of TLD-100 subjected to photon irradiation using Monte Carlo N-particle transport code version 5
Useful TL properties of TLD-100 that is an excellent candidate for using in TL dosimetry of ionizing radiation are demonstrated. This study is focused on response of TLD-100 subjected to photon irradiation. The thermoluminescence (TL) response of TLD-100 subject to various photon energy, ranging fro...
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my.utm.297842017-02-13T07:52:06Z http://eprints.utm.my/id/eprint/29784/ Thermoluminescence energy response of TLD-100 subjected to photon irradiation using Monte Carlo N-particle transport code version 5 Wagiran, Husin Hossain, Md. Imam Ramli, Ahmad Termizi Q Science (General) Useful TL properties of TLD-100 that is an excellent candidate for using in TL dosimetry of ionizing radiation are demonstrated. This study is focused on response of TLD-100 subjected to photon irradiation. The thermoluminescence (TL) response of TLD-100 subject to various photon energy, ranging from 20 keV to 6 MeV, was investigated as energy absorbed in the TL material using Monte Carlo N-Particle transport code version 5 (MCNP5). The input parameters included in this study are experimental geometry specification, source information, material information, and tallies. Tally F6 is used in this simulation. The results from MCNP5 simulation show good agreement with previous experimental data. However, the data obtained from the simulation are greater than the experimental data especially in lower energy ranges. Springer 2011 Article PeerReviewed Wagiran, Husin and Hossain, Md. Imam and Ramli, Ahmad Termizi (2011) Thermoluminescence energy response of TLD-100 subjected to photon irradiation using Monte Carlo N-particle transport code version 5. Journal of Engineering Thermophysics, 20 (3). pp. 329-333. ISSN 1810-2328 http://dx.doi.org/10.1134/S1810232811030118 10.1134/S1810232811030118 |
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Q Science (General) Wagiran, Husin Hossain, Md. Imam Ramli, Ahmad Termizi Thermoluminescence energy response of TLD-100 subjected to photon irradiation using Monte Carlo N-particle transport code version 5 |
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Useful TL properties of TLD-100 that is an excellent candidate for using in TL dosimetry of ionizing radiation are demonstrated. This study is focused on response of TLD-100 subjected to photon irradiation. The thermoluminescence (TL) response of TLD-100 subject to various photon energy, ranging from 20 keV to 6 MeV, was investigated as energy absorbed in the TL material using Monte Carlo N-Particle transport code version 5 (MCNP5). The input parameters included in this study are experimental geometry specification, source information, material information, and tallies. Tally F6 is used in this simulation. The results from MCNP5 simulation show good agreement with previous experimental data. However, the data obtained from the simulation are greater than the experimental data especially in lower energy ranges. |
format |
Article |
author |
Wagiran, Husin Hossain, Md. Imam Ramli, Ahmad Termizi |
author_facet |
Wagiran, Husin Hossain, Md. Imam Ramli, Ahmad Termizi |
author_sort |
Wagiran, Husin |
title |
Thermoluminescence energy response of TLD-100 subjected to photon irradiation using Monte Carlo N-particle transport code version 5 |
title_short |
Thermoluminescence energy response of TLD-100 subjected to photon irradiation using Monte Carlo N-particle transport code version 5 |
title_full |
Thermoluminescence energy response of TLD-100 subjected to photon irradiation using Monte Carlo N-particle transport code version 5 |
title_fullStr |
Thermoluminescence energy response of TLD-100 subjected to photon irradiation using Monte Carlo N-particle transport code version 5 |
title_full_unstemmed |
Thermoluminescence energy response of TLD-100 subjected to photon irradiation using Monte Carlo N-particle transport code version 5 |
title_sort |
thermoluminescence energy response of tld-100 subjected to photon irradiation using monte carlo n-particle transport code version 5 |
publisher |
Springer |
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2011 |
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http://eprints.utm.my/id/eprint/29784/ http://dx.doi.org/10.1134/S1810232811030118 |
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1643648371620052992 |
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13.2014675 |