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A Review: Thermoluminescence Dosimeteric Application for Phosphor

机译:综述:磷光体的热辐发光剂量仪应用

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Thermoluminescence (TL) dosimetry has emerged as an important technique for understanding the dynamics of electron trapping centers. TL glow-curve analysis methods have been applied to study the kinetics of trapped electrons and the activation energy of the corresponding electrons. Such methods include Chen's Peak shape method, Initial Rise and Variable Heating Rate method. Although, the TL does prove the presence and the depth of electron trapping centres and it does not give direct information about the shallow electron trapping centres, Thermoluminescence dosimeters (TLD) are one of the most highly efficient means of characterization over a wide range of radiation doses. New materials are being introduced which allow more sensitivity and linearity in the radiation response of the TL signal output. Phosphors shows TL emission when it gets exposed to high ionizing radiation such as γ-rays, β-rays,C~(5+) (carbon-ion) beam etc. Energy gets stored in the material and this stored energy is emitted in the form of light when the material is heated. This phenomenon is used for measuring radiation dose. TL property of inorganic materials are decided by the factors such as crystal structure, band gap, synthesis process, crystal size, lattice imperfections and effects of impurities on solid. Lattice imperfections are described as defect centers that may occur when ions of either sign ions move away from their original sites thus leaving vacant sites that are able to interact with free charge carriers.
机译:热致发光(TL)剂量仪作为理解电子捕获中心动态的重要技术。已经应用TL发光曲线分析方法研究被困电子的动力学和相应电子的激活能量。这些方法包括陈的峰形方法,初始上升和可变加热速率方法。虽然,TL确实证明了电子捕获中心的存在和深度,并且它不会给出关于浅电子捕获中心的直接信息,热致发光剂量计(TLD)是在广泛辐射方面最高效的表征手段之一剂量。正在引入新材料,其在TL信号输出的辐射响应中允许更灵敏度和线性度。当它暴露于高电离辐射时,磷光体显示出T1发射,例如γ射线,β射线,C〜(5+)(碳离子)束等。能量存储在材料中,并且该储存能量被排放在当材料加热时,光的形式。这种现象用于测量辐射剂量。无机材料的TL性能由晶体结构,带隙,合成过程,晶体尺寸,晶格缺陷和固体杂质的影响等因素决定。当符号离子的离子远离其原始网站时,晶格缺陷被描述为可能发生的缺陷中心,从而留下能够与自由电量载流子相互作用的空气部位。

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