147 MeV 84Kr 和 24.5 MeV 14N 离子辐照对 BaFBr 晶体的光吸收、发光、拉曼光谱和表面的影响

Crystals Pub Date : 2024-05-21 DOI:10.3390/cryst14060480
A. Akilbekov, D. Kenbayev, A. Dauletbekova, Alexey Shalaev, A. Akylbekova, G. Aralbayeva, Z. Baimukhanov, M. Baizhumanov, E. Elsts, A. Popov
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引用次数: 0

摘要

如今,由铕离子激活的 BaFBr 晶体被用作探测器,可将吸收的能量储存在可转移的中心。在这些材料中,X 射线照射产生的图像在室温下的黑暗环境中长期保持稳定。因此,记忆图像板应运而生,并被推广到其他类型的电离辐射中。尽管在 X 射线存储和读取信息方面取得了重大进展,但这些过程的机制至今尚未完全确定,这阻碍了这类荧光粉的效率。本研究使用光致发光 (PL)、光吸收 (OA)、拉曼光谱 (RS) 和原子力显微镜 (AFM) 等方法,研究了在 300 K 下用 147 MeV 84Kr 和 24.5 MeV 14N 离子以 (1010-1014) 离子/平方厘米的通量辐照 BaFBr 晶体时,氧空位缺陷的发光情况。BaFBr 晶体是在一个特殊装置上用 Shteber 法生长的。能量色散 X 射线光谱(EDX)分析表明晶体中存在 Ba、Br、F 和 O。根据离子的通量和类型对复杂的 PL 带进行的分析表明,形成了三种类型的氧空位缺陷。大缺陷(轨道)和聚集体对氧空位缺陷的发光有很大影响。在用 147 MeV 84Kr 离子照射 BaFBr 晶体时,首次显示了小丘和轨道的形成。拉曼光谱分析证实,由于轨道重叠,BaFBr 晶体在 147 MeV 84Kr 离子的辐照下发生了非晶化,这与用 24.5 MeV 14N 离子辐照的样品形成了鲜明对比。拉曼光谱和吸收光谱显示,在快速重离子辐照下形成了空穴和电子聚集中心。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of 147 MeV 84Kr and 24.5 MeV 14N Ions Irradiation on the Optical Absorption, Luminescence, Raman Spectra and Surface of BaFBr Crystals
Today, BaFBr crystals activated by europium ions are used as detectors that store absorbed energy in metastable centers. In these materials, the image created by X-ray irradiation remains stable in the dark for long periods at room temperature. As a result, memory image plates are created, and they are extended to other types of ionizing radiation as well. Despite significant progress towards X-ray storage and readout of information, the mechanisms of these processes have not been fully identified to date, which has hindered the efficiency of this class of phosphors. In this study, using photoluminescence (PL), optical absorption (OA), Raman spectroscopy (RS), and atomic force microscopy (AFM), the luminescence of oxygen vacancy defects to BaFBr crystals irradiated with 147 MeV 84Kr and 24.5 MeV 14N ions at 300 K to fluences (1010–1014) ion/cm2 was investigated. BaFBr crystals were grown by the Shteber method on a special device. Energy-dispersive X-ray spectroscopy (EDX) analysis revealed the presence of Ba, Br, F, and O. The effect of oxygen impurities present in the studied crystals was considered. The analysis of the complex PL band, depending on the fluence and type of ions, showed the formation of three types of oxygen vacancy defects. Macrodefects (tracks) and aggregates significantly influence the luminescence of oxygen vacancy defects. The creation of hillocks and tracks in BaFBr crystals irradiated with 147 MeV 84Kr ions is shown for the first time. Raman spectra analysis confirmed that BaFBr crystals were amorphized by 147 MeV 84Kr ions due to track overlap, in contrast to samples irradiated with 24.5 MeV 14N ions. Raman and absorption spectra demonstrated the formation of hole and electron aggregate centers upon swift heavy ions irradiation.
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