Investigation of gamma-ray shielding parameters of bismuth phospho-tellurite glasses doped with varying Sm2O3

The gamma ray shielding parameters such as mass attenuation coefficient, effective atomic number, equivalent atomic number, exposure buildup factor, and energy absorption buildup factor were determined for the 47.5P2O5+45ZnO+(5-x) Bi2O3+2.5TeO2 +xSm2O3 glass system using Phy-X/PSD software in the en...

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Main Authors: S.B. Kolavekar, G.B. Hiremath, Prashant N. Patil, N.M. Badiger, N.H. Ayachit
Format: Article
Language:English
Published: Elsevier 2022-11-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844022030766
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author S.B. Kolavekar
G.B. Hiremath
Prashant N. Patil
N.M. Badiger
N.H. Ayachit
author_facet S.B. Kolavekar
G.B. Hiremath
Prashant N. Patil
N.M. Badiger
N.H. Ayachit
author_sort S.B. Kolavekar
collection DOAJ
description The gamma ray shielding parameters such as mass attenuation coefficient, effective atomic number, equivalent atomic number, exposure buildup factor, and energy absorption buildup factor were determined for the 47.5P2O5+45ZnO+(5-x) Bi2O3+2.5TeO2 +xSm2O3 glass system using Phy-X/PSD software in the energy range from 0.015 to 15 MeV at penetration depths of 1–40 MFP. To understand the effect of Sm2O3 on gamma ray shielding parameters in selected glass system, the Sm2O3 was varied in the glass from 0.01 to 1 mol%. The calculated results show that the mass attenuation coefficient decreases with increasing photon energy but not influenced by the addition of Sm2O3. The Zeq values are lower in low (≤100 keV) and high energy regions (1 MeV–15 MeV) and higher in the medium energy region, indicating that the Compton scattering is significant in the medium energy region. The values of exposure buildup factors and energy absorption buildup factors are smaller in the low and high energy regions than in the intermediate energy region, indicating that the photo absorption and pair creation processes are important in the low and high energy regions, respectively. The 1% mole concentration of Sm2O3 in the selected glass shows higher exposure buildup factor and energy absorption buildup factor values in the intermediate energy region. The high density, high effective atomic number, and transparency to visible light of these materials indicate that they can be used as shielding materials in nuclear reactors and nuclear technology.
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spelling doaj.art-3e139f6d5a88411da24d59ac09de132d2022-12-22T02:45:17ZengElsevierHeliyon2405-84402022-11-01811e11788Investigation of gamma-ray shielding parameters of bismuth phospho-tellurite glasses doped with varying Sm2O3S.B. Kolavekar0G.B. Hiremath1Prashant N. Patil2N.M. Badiger3N.H. Ayachit4Department of Physics, KLE Technological University, B.V.B.C.E.T Campus, Hubballi, 580031, Karnataka, IndiaSchool of Advanced Sciences, KLE Technological University, Hubballi, 580031, Karnataka, IndiaSchool of Advanced Sciences, KLE Technological University, Hubballi, 580031, Karnataka, IndiaSchool of Advanced Sciences, KLE Technological University, Hubballi, 580031, Karnataka, India; Corresponding author.Center for Material Science, KLE Technological University, Hubballi, 580031, Karnataka, IndiaThe gamma ray shielding parameters such as mass attenuation coefficient, effective atomic number, equivalent atomic number, exposure buildup factor, and energy absorption buildup factor were determined for the 47.5P2O5+45ZnO+(5-x) Bi2O3+2.5TeO2 +xSm2O3 glass system using Phy-X/PSD software in the energy range from 0.015 to 15 MeV at penetration depths of 1–40 MFP. To understand the effect of Sm2O3 on gamma ray shielding parameters in selected glass system, the Sm2O3 was varied in the glass from 0.01 to 1 mol%. The calculated results show that the mass attenuation coefficient decreases with increasing photon energy but not influenced by the addition of Sm2O3. The Zeq values are lower in low (≤100 keV) and high energy regions (1 MeV–15 MeV) and higher in the medium energy region, indicating that the Compton scattering is significant in the medium energy region. The values of exposure buildup factors and energy absorption buildup factors are smaller in the low and high energy regions than in the intermediate energy region, indicating that the photo absorption and pair creation processes are important in the low and high energy regions, respectively. The 1% mole concentration of Sm2O3 in the selected glass shows higher exposure buildup factor and energy absorption buildup factor values in the intermediate energy region. The high density, high effective atomic number, and transparency to visible light of these materials indicate that they can be used as shielding materials in nuclear reactors and nuclear technology.http://www.sciencedirect.com/science/article/pii/S2405844022030766GlassShieldingAttenuationSm2O3Effective atomic numberBuildup factor
spellingShingle S.B. Kolavekar
G.B. Hiremath
Prashant N. Patil
N.M. Badiger
N.H. Ayachit
Investigation of gamma-ray shielding parameters of bismuth phospho-tellurite glasses doped with varying Sm2O3
Heliyon
Glass
Shielding
Attenuation
Sm2O3
Effective atomic number
Buildup factor
title Investigation of gamma-ray shielding parameters of bismuth phospho-tellurite glasses doped with varying Sm2O3
title_full Investigation of gamma-ray shielding parameters of bismuth phospho-tellurite glasses doped with varying Sm2O3
title_fullStr Investigation of gamma-ray shielding parameters of bismuth phospho-tellurite glasses doped with varying Sm2O3
title_full_unstemmed Investigation of gamma-ray shielding parameters of bismuth phospho-tellurite glasses doped with varying Sm2O3
title_short Investigation of gamma-ray shielding parameters of bismuth phospho-tellurite glasses doped with varying Sm2O3
title_sort investigation of gamma ray shielding parameters of bismuth phospho tellurite glasses doped with varying sm2o3
topic Glass
Shielding
Attenuation
Sm2O3
Effective atomic number
Buildup factor
url http://www.sciencedirect.com/science/article/pii/S2405844022030766
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