首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry >Mass attenuation coefficients of B2O3–Al2O3–SiO2–CaF2 glass system at 0.662 and 1.25 MeV gamma energies
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Mass attenuation coefficients of B2O3–Al2O3–SiO2–CaF2 glass system at 0.662 and 1.25 MeV gamma energies

机译:B 2 O 3 –Al 2 O 3 –SiO 2 –CaF 2 玻璃系统在0.662和1.25 MeV伽马能下

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The total mass attenuation coefficients, partial interaction and the effective atomic numbers (Zeff) of glass system (80−x)B2O3–10Al2O3–10SiO2–xCaF2 (where x = 5, 10, 20, 25, 30, 35 and 40 mol %) have been calculated at photon energies 0.662 and 1.25 MeV using the WinXCom software on the basis of mixture rule. Results indicated that the total mass attenuation coefficients showed a decrease with increasing the CaF2 concentration, due to a decrease in Compton scattering probability, which gave a dominant contribution to the total mass attenuation coefficients for the studied glass samples at both energies. However, the photoelectric absorption and coherent scattering showed an increase with increasing the CaF2, concentrations at same energies. For a comparison, the total mass attenuation coefficients of the glass system had lower values at the energy 1.25 MeV than that at 0.662 MeV. Zeff was found to increase linearly with the increase of CaF2 concentrations. It was concluded that low CaF2 concentrations in glass system, under study, have Zeff close to that of human tissue and have higher total absorption coefficients at energy of 0.662 MeV than that at 1.25 MeV. These results are very useful in designing gamma radiation detectors using thermoluminescence technique. Therefore, it is recommended to use low CaF2 concentration of our glass system as good gamma detectors at energy of 1.25 MeV.
机译:玻璃系统(80-x)B 2 O 3 的总质量衰减系数,部分相互作用和有效原子序数(Z eff ) –10Al 2 O 3 –10SiO 2 –xCaF 2 (其中x = 5、10、20、25 ,根据混合规则,使用WinXCom软件在光子能量0.662和1.25 MeV下计算了30 mol%,30 mol%和35 mol%)。结果表明,总质量衰减系数随CaF 2 浓度的增加而减小,这是由于康普顿散射概率的降低所致,这对所研究的玻璃样品的总质量衰减系数起主要作用。在两种能量下。然而,在相同能量下,随着CaF 2 浓度的增加,光电吸收和相干散射呈现出增加的趋势。为了进行比较,玻璃系统的总质量衰减系数在能量为1.25 MeV时比在0.662 MeV时低。 Z eff 随CaF 2 浓度的增加而线性增加。结论是:在研究中,玻璃系统中低的CaF 2 浓度具有比人体组织高的Z eff ,并且在0.662 MeV的能量下具有更高的总吸收系数。在1.25 MeV下这些结果对于使用热发光技术设计伽马辐射探测器非常有用。因此,建议将玻璃系统中低CaF 2 的浓度用作能量为1.25 MeV的良好伽玛探测器。

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