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首页> 外文期刊>Radiation Protection Dosimetry >MODELLING OF THE THERMOLUMINESCENCE RESPONSE OF LiF:Mg,Cu,P (MCP-N) DETECTORS AFTER DOSES OF LOW ENERGY PHOTONS
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MODELLING OF THE THERMOLUMINESCENCE RESPONSE OF LiF:Mg,Cu,P (MCP-N) DETECTORS AFTER DOSES OF LOW ENERGY PHOTONS

机译:低能光子注入后LiF:Mg,Cu,P(MCP-N)检测器的热发光响应建模

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摘要

A simple numerical approach has been developed to predict the relative (to ~(137)Cs γ rays) response of LiF:Mg,Cu, P (MCP-N) thermoluminescence detectors after doses of photons in the energy range from 4 to 1000 keV. The following major factors influencing the TL detector response were taken into account: (i) mass energy absorption coefficients for LiF:Mg,Cu,P and air; (ii) attenuation of low energy X rays in a thick TL detector; (iii) self-absorption of thermoluminescence light in a thick detector; and (iv) the relative TL efficiency (intrinsic luminous efficiency), η, of MCP-N detectors, which depends strongly on the photon energy via radiation ionisation density. The values of η were calculated using the microdosimetric one-hit detector model and fitted with the function η =0.794 - exp [-(E[keV]-4.663)/9.69] over the range of photon energies, 4 keV < E < 40 keV. The results of model calculations agree well with experimental values of η measured in the energy range 6-18 keV at SLAC using monoenergetic synchrotron radiation and with literature data for higher energies. This approach may be useful in practical applications of MCP-N detectors in X ray dosimetry, such as TL dosimetry of mammography units.
机译:已经开发出一种简单的数值方法来预测在能量范围为4到1000 keV的光子剂量后LiF:Mg,Cu,P(MCP-N)热致发光探测器的相对(〜(137)Csγ射线)响应。考虑了影响TL检测器响应的以下主要因素:(i)LiF的质量能吸收系数:Mg,Cu,P和空气; (ii)在厚层TL检测器中衰减低能X射线; (iii)在厚检测器中自吸收热致发光光; (iv)MCP-N检测器的相对TL效率(内在发光效率)η很大程度上取决于通过辐射电离密度产生的光子能量。使用微剂量一击检测器模型计算η值,并在光子能量范围内将η= 0.794-exp [-(E [keV] -4.663)/9.69]拟合,其中4 keV

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