• NUCLEAR TECHNIQUES
  • Vol. 47, Issue 2, 020403 (2024)
Zong MENG*, Hao LIU, Jingbo LIU, and Hang WANG
Author Affiliations
  • School of Electrical Engineering, Yanshan University, Qinhuangdao 066004, China
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    DOI: 10.11889/j.0253-3219.2024.hjs.47.020403 Cite this Article
    Zong MENG, Hao LIU, Jingbo LIU, Hang WANG. Study on the factors influencing the output response of LYSO:Ce electron radiation detector[J]. NUCLEAR TECHNIQUES, 2024, 47(2): 020403 Copy Citation Text show less
    Energy spectrum of particle captured at GEO (a) Proton spectrum, (b) Electron spectrum
    Fig. 1. Energy spectrum of particle captured at GEO (a) Proton spectrum, (b) Electron spectrum
    Model design scheme
    Fig. 2. Model design scheme
    Detector model for the simulation (a) Radiation diagram of the detector, (b) Profile map
    Fig. 3. Detector model for the simulation (a) Radiation diagram of the detector, (b) Profile map
    Change trend of the electron range in aluminum as a function of energy
    Fig. 4. Change trend of the electron range in aluminum as a function of energy
    Radiation-shielding effect of different metals (a) The relationship between shielding layer thickness and electron energy, (b) Thickness required to shield protons, (c) Mass required to shield protons
    Fig. 5. Radiation-shielding effect of different metals (a) The relationship between shielding layer thickness and electron energy, (b) Thickness required to shield protons, (c) Mass required to shield protons
    Total dose-curve for aluminum
    Fig. 6. Total dose-curve for aluminum
    Relationship between shield thickness and absorbed dose
    Fig. 7. Relationship between shield thickness and absorbed dose
    Relationship between radiation dose and photon number
    Fig. 8. Relationship between radiation dose and photon number
    Relationship between radiation dose and absorbed dose
    Fig. 9. Relationship between radiation dose and absorbed dose
    Relationship between radiation source position and photon number
    Fig. 10. Relationship between radiation source position and photon number
    Effect of electron energy on detection efficiency
    Fig. 11. Effect of electron energy on detection efficiency
    Relationship between energy and detector response coefficient
    Fig. 12. Relationship between energy and detector response coefficient
    元素ElementLuYSiOCe

    相对原子质量

    Relative atomic mass

    17588.90628.0916140
    摩尔比Molar ratio1.60.4150.004

    质量分数

    Mass fraction

    0.660.083 80.066 20.188 60.001 3
    Table 1. Mass fraction of LYSO:Ce
    Zong MENG, Hao LIU, Jingbo LIU, Hang WANG. Study on the factors influencing the output response of LYSO:Ce electron radiation detector[J]. NUCLEAR TECHNIQUES, 2024, 47(2): 020403
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