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对掺杂不同SmO的铋磷碲酸盐玻璃的γ射线屏蔽参数的研究。

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

作者信息

Kolavekar S B, Hiremath G B, Patil Prashant N, Badiger N M, Ayachit N H

机构信息

Department of Physics, KLE Technological University, B.V.B.C.E.T Campus, Hubballi, 580031, Karnataka, India.

School of Advanced Sciences, KLE Technological University, Hubballi, 580031, Karnataka, India.

出版信息

Heliyon. 2022 Nov 22;8(11):e11788. doi: 10.1016/j.heliyon.2022.e11788. eCollection 2022 Nov.

Abstract

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 47.5PO+45ZnO+(5-x) BiO+2.5TeO +xSmO 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 SmO on gamma ray shielding parameters in selected glass system, the SmO 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 SmO. The Z 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 SmO 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.

摘要

使用Phy-X/PSD软件,在1 - 40个平均自由程的穿透深度下,针对47.5PO + 45ZnO + (5 - x)BiO + 2.5TeO + xSmO玻璃体系,在0.015至15 MeV的能量范围内确定了伽马射线屏蔽参数,如质量衰减系数、有效原子序数、等效原子序数、照射量积累因子和能量吸收积累因子。为了解SmO对所选玻璃体系中伽马射线屏蔽参数的影响,玻璃中SmO的含量在0.01至1 mol%之间变化。计算结果表明,质量衰减系数随光子能量增加而降低,但不受SmO添加量的影响。Z值在低能(≤100 keV)和高能区域(1 MeV - 15 MeV)较低,在中能区域较高,这表明康普顿散射在中能区域较为显著。低能和高能区域的照射量积累因子和能量吸收积累因子值小于中间能区,这表明光吸收和电子对产生过程分别在低能和高能区域较为重要。所选玻璃中1%摩尔浓度的SmO在中间能区显示出较高的照射量积累因子和能量吸收积累因子值。这些材料的高密度、高有效原子序数和对可见光的透明度表明它们可作为核反应堆和核技术中的屏蔽材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d634/9706701/029476e18cba/gr8.jpg

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