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Local coordination state of rare earth in eutectic scintillators for neutron detector applications

机译:中子探测器应用中共晶闪烁体中稀土的局部配位状态

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摘要

Atomic distribution in phosphors for neutron detection has not been fully elucidated, although their ionization efficiency is strongly dependent on the state of the rare earth in the matrix. In this work, we examine optical properties of Eu-doped 80LiF-20CaF2 eutectics for neutron detector applications based on the Eu distribution. At low concentrations, aggregation of Eu cations is observed, whereas homogeneous atomic dispersion in the CaF2 layer, to substitute Ca2+ ions, is observed in the eutectics at high concentrations. Eu LIII edge X-ray absorption fine structure (XAFS) analysis suggests that neutron responses do not depend on the amount of Eu2+ ions. However, transparency, which depends on an ordered lamellar structure, is found to be important for a high light yield in neutron detection. The results confirm the effectiveness of the basic idea concerning the separation of radiation absorbers and activators in particle radiation scintillation and present potential for further improvement of novel bulk detectors.
机译:尽管中子检测的磷光体的原子分布非常依赖于基质中稀土的状态,但尚未完全阐明其原子分布。在这项工作中,我们基于Eu分布,研究了Eu掺杂的80LiF-20CaF2共晶体的光学性质,用于中子探测器应用。在低浓度下,观察到Eu阳离子的聚集,而在高浓度下,在共晶中观察到CaF2层中原子均质分散,以替代Ca 2 + 离子。 Eu LIII边缘X射线吸收精细结构(XAFS)分析表明,中子响应不取决于Eu 2 + 离子的数量。但是,发现透明性取决于有序的层状结构,对于中子检测中的高光输出至关重要。结果证实了有关在粒子辐射闪烁中分离辐射吸收剂和活化剂的基本思想的有效性,并为进一步改进新型体检测器提供了潜力。

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