The effect of photomultiplier tube glass entrance window on plastic scintillator cast sheet photon dosimetry: A Monte Carlo study

Plastic scintillators are commonly used for medical dosimetry due to the density and effective atomic numbers that are closer to human soft tissue. When a photomultiplier tube (PMT) is used with a thin scintillator, reflected photon and electrons as a result of Compton scattering either inside the...

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Main Authors: Mohamed, N.S., Aydin, A., Tajudin, S.M.
Format: Conference or Workshop Item
Language:English
Published: 2020
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Online Access:http://eprints.unisza.edu.my/1929/1/FH03-FSK-20-39343.pdf
http://eprints.unisza.edu.my/1929/
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spelling my-unisza-ir.19292020-11-24T07:03:08Z http://eprints.unisza.edu.my/1929/ The effect of photomultiplier tube glass entrance window on plastic scintillator cast sheet photon dosimetry: A Monte Carlo study Mohamed, N.S. Aydin, A. Tajudin, S.M. Q Science (General) Plastic scintillators are commonly used for medical dosimetry due to the density and effective atomic numbers that are closer to human soft tissue. When a photomultiplier tube (PMT) is used with a thin scintillator, reflected photon and electrons as a result of Compton scattering either inside the scintillator or PMT entrance window, might contribute to a significant source of additional absorbed dose. Monte Carlo simulation was used to study the effect of different PMT window materials on the absorbed dose of a . mm plastic scintillator cast sheet for parallel photon beam energy up to 1 MeV. The additional dose in the plastic scintillator from 400 keV to 1 MeV due to sapphire and lithium fluoride (LiF) glass are increases from 11% to 47% and 8% to 31 %, respectively. Despite of the lower density of Quartz among other materials, Quartz and magnesium fluoride (MgF) demonstrate almost similar trends of additional dose throughout the energies, which is closer to the sapphire. To reduce the unexpected additional dose, a plastic scintillator with a considerable thickness of a PMT window should be adopted for the 'soft-tissue' dose response. 2020 Conference or Workshop Item NonPeerReviewed text en http://eprints.unisza.edu.my/1929/1/FH03-FSK-20-39343.pdf Mohamed, N.S. and Aydin, A. and Tajudin, S.M. (2020) The effect of photomultiplier tube glass entrance window on plastic scintillator cast sheet photon dosimetry: A Monte Carlo study. In: International Nuclear Science Technology and Engineering Conference 2019, iNuSTEC 2019, 29-31 Oct 2019, UKM, Bangi.
institution Universiti Sultan Zainal Abidin
building UNISZA Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sultan Zainal Abidin
content_source UNISZA Institutional Repository
url_provider https://eprints.unisza.edu.my/
language English
topic Q Science (General)
spellingShingle Q Science (General)
Mohamed, N.S.
Aydin, A.
Tajudin, S.M.
The effect of photomultiplier tube glass entrance window on plastic scintillator cast sheet photon dosimetry: A Monte Carlo study
description Plastic scintillators are commonly used for medical dosimetry due to the density and effective atomic numbers that are closer to human soft tissue. When a photomultiplier tube (PMT) is used with a thin scintillator, reflected photon and electrons as a result of Compton scattering either inside the scintillator or PMT entrance window, might contribute to a significant source of additional absorbed dose. Monte Carlo simulation was used to study the effect of different PMT window materials on the absorbed dose of a . mm plastic scintillator cast sheet for parallel photon beam energy up to 1 MeV. The additional dose in the plastic scintillator from 400 keV to 1 MeV due to sapphire and lithium fluoride (LiF) glass are increases from 11% to 47% and 8% to 31 %, respectively. Despite of the lower density of Quartz among other materials, Quartz and magnesium fluoride (MgF) demonstrate almost similar trends of additional dose throughout the energies, which is closer to the sapphire. To reduce the unexpected additional dose, a plastic scintillator with a considerable thickness of a PMT window should be adopted for the 'soft-tissue' dose response.
format Conference or Workshop Item
author Mohamed, N.S.
Aydin, A.
Tajudin, S.M.
author_facet Mohamed, N.S.
Aydin, A.
Tajudin, S.M.
author_sort Mohamed, N.S.
title The effect of photomultiplier tube glass entrance window on plastic scintillator cast sheet photon dosimetry: A Monte Carlo study
title_short The effect of photomultiplier tube glass entrance window on plastic scintillator cast sheet photon dosimetry: A Monte Carlo study
title_full The effect of photomultiplier tube glass entrance window on plastic scintillator cast sheet photon dosimetry: A Monte Carlo study
title_fullStr The effect of photomultiplier tube glass entrance window on plastic scintillator cast sheet photon dosimetry: A Monte Carlo study
title_full_unstemmed The effect of photomultiplier tube glass entrance window on plastic scintillator cast sheet photon dosimetry: A Monte Carlo study
title_sort effect of photomultiplier tube glass entrance window on plastic scintillator cast sheet photon dosimetry: a monte carlo study
publishDate 2020
url http://eprints.unisza.edu.my/1929/1/FH03-FSK-20-39343.pdf
http://eprints.unisza.edu.my/1929/
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score 13.18916